This Global Plan has been developed by the World Health Organization and the United Nations Regional Commissions, in cooperation with partners in the United Nations Road Safety Collaboration and other stakeholders, as a guiding document to support the implementation of the Decade of Action 2021–2030 and its objectives.
Toolkit decade of action for road safety 2011 2020 englishNETWORKVIAL MEXICO
The document provides information about launching the Decade of Action for Road Safety 2011-2020, including a toolkit for organizing launch events. It outlines the background and vision for the Decade, which aims to stabilize and reduce the nearly 1.3 million annual road traffic deaths. The Global Plan for the Decade includes five pillars for coordinated global action: building road safety management capacity; improving road and transport infrastructure safety; developing safer vehicles; enhancing road user behavior; and improving emergency response. The toolkit provides ideas and guidance for organizing local launch events to promote and support the goals of the Global Plan.
Over 3000 people are killed in road crashes every day, accounting for 3% of global GDP lost. Low and middle income countries see 90% of road deaths. The UN has set a goal to halve global road deaths by 2020 as part of new Sustainable Development Goals. This will require improved rates of safety over what was achieved in the previous UN Decade of Action for Road Safety. A Safe System approach which recognizes human error and shares responsibility among road and vehicle designers is endorsed to help achieve this goal through safer vehicles, roads, speeds and post-crash response. Minimum UN vehicle safety standards need to be applied globally to help reduce crashes and injuries.
Global road traffic deaths are rising despite commitments to reduce them. Three key points are made:
1) Over 3,500 people are killed daily in road crashes, costing 3% of global GDP. Low and middle income countries see twice the fatality rates of wealthier nations.
2) The UN's decade of action and sustainable development goals aim to halve road deaths and injuries by 2020, but progress has stalled or reversed in many places like the EU and US.
3) A paradigm shift is needed towards a "safe systems" approach that recognizes human fallibility and shares responsibility across road and vehicle design. Proven technologies like electronic stability control must be accelerated to reverse rising fatality trends by 20
- Road traffic crashes kill over 1.3 million people annually and injure 50 million, greater than deaths from malaria or tuberculosis. Children account for one in five deaths, with 260,000 killed and 1 million disabled each year.
- Road deaths are forecast to increase to over 1.9 million annually by 2020 if no action is taken. However, the world could prevent 5 million deaths and 50 million serious injuries between now and 2020 by dramatically increasing investment in road safety.
- Road injuries disproportionately impact the poor and are hindering economic growth in many developing countries. Each death results in lifelong grief for families and economic hardship. Urgent global action is needed to address this growing public health and development crisis.
1) Several international organizations work to improve global road safety, including the UN which launched a Decade of Action for Road Safety and incorporated road safety into the Sustainable Development Goals.
2) The World Health Organization and UNECE help coordinate global road safety efforts and promote best practices, while the World Bank and other development banks fund road infrastructure projects and aim to improve road safety.
3) Despite progress, the global community still faces challenges in achieving the SDG target of halving road deaths by 2020 due to slow implementation of effective policies, inadequate funding, and safety issues in developing nations.
Road traffic injuries are a major public health issue, killing over 1.2 million people annually. Low and middle income countries account for 90% of road traffic deaths, with young adults and males being most at risk. Without intervention, road traffic deaths are predicted to increase globally by 67% by 2020. Road traffic injuries impose enormous economic costs and often plunge families into poverty. However, road traffic crashes can be prevented through a systems approach that addresses road infrastructure, vehicle safety, and laws regarding speed limits, seatbelts, and alcohol impairment. A multisectoral effort is needed to implement effective road safety policies and interventions.
The document discusses the role of corporates in promoting road safety in India. It notes that road accidents cost the Indian economy billions each year. It outlines the key stakeholders involved in road safety efforts, including government agencies, educational institutions, media, police, health services, transport authorities, insurance companies and corporates. The document suggests road safety measures corporates can implement at the employee level, corporate level and for third parties to help reduce accidents and support broader road safety initiatives.
Toolkit decade of action for road safety 2011 2020 englishNETWORKVIAL MEXICO
The document provides information about launching the Decade of Action for Road Safety 2011-2020, including a toolkit for organizing launch events. It outlines the background and vision for the Decade, which aims to stabilize and reduce the nearly 1.3 million annual road traffic deaths. The Global Plan for the Decade includes five pillars for coordinated global action: building road safety management capacity; improving road and transport infrastructure safety; developing safer vehicles; enhancing road user behavior; and improving emergency response. The toolkit provides ideas and guidance for organizing local launch events to promote and support the goals of the Global Plan.
Over 3000 people are killed in road crashes every day, accounting for 3% of global GDP lost. Low and middle income countries see 90% of road deaths. The UN has set a goal to halve global road deaths by 2020 as part of new Sustainable Development Goals. This will require improved rates of safety over what was achieved in the previous UN Decade of Action for Road Safety. A Safe System approach which recognizes human error and shares responsibility among road and vehicle designers is endorsed to help achieve this goal through safer vehicles, roads, speeds and post-crash response. Minimum UN vehicle safety standards need to be applied globally to help reduce crashes and injuries.
Global road traffic deaths are rising despite commitments to reduce them. Three key points are made:
1) Over 3,500 people are killed daily in road crashes, costing 3% of global GDP. Low and middle income countries see twice the fatality rates of wealthier nations.
2) The UN's decade of action and sustainable development goals aim to halve road deaths and injuries by 2020, but progress has stalled or reversed in many places like the EU and US.
3) A paradigm shift is needed towards a "safe systems" approach that recognizes human fallibility and shares responsibility across road and vehicle design. Proven technologies like electronic stability control must be accelerated to reverse rising fatality trends by 20
- Road traffic crashes kill over 1.3 million people annually and injure 50 million, greater than deaths from malaria or tuberculosis. Children account for one in five deaths, with 260,000 killed and 1 million disabled each year.
- Road deaths are forecast to increase to over 1.9 million annually by 2020 if no action is taken. However, the world could prevent 5 million deaths and 50 million serious injuries between now and 2020 by dramatically increasing investment in road safety.
- Road injuries disproportionately impact the poor and are hindering economic growth in many developing countries. Each death results in lifelong grief for families and economic hardship. Urgent global action is needed to address this growing public health and development crisis.
1) Several international organizations work to improve global road safety, including the UN which launched a Decade of Action for Road Safety and incorporated road safety into the Sustainable Development Goals.
2) The World Health Organization and UNECE help coordinate global road safety efforts and promote best practices, while the World Bank and other development banks fund road infrastructure projects and aim to improve road safety.
3) Despite progress, the global community still faces challenges in achieving the SDG target of halving road deaths by 2020 due to slow implementation of effective policies, inadequate funding, and safety issues in developing nations.
Road traffic injuries are a major public health issue, killing over 1.2 million people annually. Low and middle income countries account for 90% of road traffic deaths, with young adults and males being most at risk. Without intervention, road traffic deaths are predicted to increase globally by 67% by 2020. Road traffic injuries impose enormous economic costs and often plunge families into poverty. However, road traffic crashes can be prevented through a systems approach that addresses road infrastructure, vehicle safety, and laws regarding speed limits, seatbelts, and alcohol impairment. A multisectoral effort is needed to implement effective road safety policies and interventions.
The document discusses the role of corporates in promoting road safety in India. It notes that road accidents cost the Indian economy billions each year. It outlines the key stakeholders involved in road safety efforts, including government agencies, educational institutions, media, police, health services, transport authorities, insurance companies and corporates. The document suggests road safety measures corporates can implement at the employee level, corporate level and for third parties to help reduce accidents and support broader road safety initiatives.
This document summarizes key lessons learned from 2020 regarding transport planning and the relationship between transport and health. It notes that scenario planning is important for dealing with uncertainty and discontinuities, rather than relying on forecasts of incremental change. The pandemic illustrated that transport is a vector for disease diffusion and highlighted health impacts of mobility choices. It disrupted collective transport but also reduced air pollution and encouraged active travel temporarily. Going forward, collaborative scenario planning is needed, and questions remain around sustainability of public transport models and independent mobility post-pandemic.
Road Safety Foundation: Making Road Safety PayAgeas UK
The document recommends that the UK Department for Transport develop a 10-year "Towards Zero" strategy to reduce road deaths and injuries, with performance goals and tracking costs for individual authorities. It also recommends establishing a task force of stakeholders to provide leadership. The strategy should be published mid-decade.
High-level Meeting on Sustainable Transport - United Nations General Assembly...Christina Parmionova
Sustainable transport is crucial to address the special needs of countries in special situations by establishing and promoting efficient transport systems that particularly link least developed countries (LDCs), landlocked developing countries (LLDCs) and small island developing states (SIDS) more efficiently to international markets and global supply chains. Sustainable transport systems are also critical to empower vulnerable people, including by providing rural communities with access to major roads, rail lines and public and non-motorized transport options that enable access to economic and social activities. At the same time, accessible, affordable and sustainable transport services are still lacking in many parts of the world, especially in developing countries, constraining mobility and
connectivity to regional and global transport networks. Over 1 billion people still lack access to an all-weather road and adequate transport services. Even where transport
infrastructure and systems are present, they may not provide safe, affordable, and
convenient access for all, particularly for groups in vulnerable situations such as the women, children and youth, older persons, and persons with disabilities, with the poor
often spending one fifth of their income on public transport. Deaths and injuries from
road traffic accidents continue to rise, road traffic crashes kill approximately 1.3 million
people worldwide annually, with disproportionate burden falling on the healthcare
systems and economies in developing countries. Existing transport networks can also face challenges, such as congestion, poor maintenance, and lack of resilience to disasters, extreme weather events and climate
change. It was estimated that additional spending for roads is likely to amount to 2% of
GDP in low-income developing countries to meet the SDG objectives, which do not
include other components of sustainable transport, such as railways, ports, and mass
transit. There is a need to develop and enhance multimodal transport systems that fully utilize and integrate public transport systems, rail, maritime, inland shipping, ferry, and air transport, as well as non-motorized transport such as cycling and walking. Passenger and freight transport, with different stakeholders, require differentiated policy solutions and investment models. As maritime transport accounts for over 80%, by volume, of all global freight, it is
essential to support countries with the lowest shipping connectivity. These countries often face a vicious cycle, of low trade volumes that discourage investments in transport
connectivity, and low connectivity that makes trade even more costly and uncompetitive.
Centering Safety at Metropolitan Planning Organizationsvisionzeronetwork
Through regional planning, funding and policy, MPOs are uniquely positioned to embrace Vision Zero and align their efforts with the goal of saving lives.
Centering Safety at Metropolitan Planning OrganizationsKathleen Ferrier
Through regional planning, funding and policy, MPOs are uniquely positioned to embrace Vision Zero and align their efforts with the goal of saving lives.
MPOs are uniquely positioned to embrace Vision Zero and save lives. MPOs provide funding based on long range transportation plans, they serve as a regional nexus for crash data and performance measurement, and they have the ability to stimulate a collaborative process to address issues that no single jurisdiction can tackle alone. This resource highlights the role that MPOs can play in Vision Zero. We feature successful strategies on safety measurement, funding, policy, and planning from MPOs across the country
The document provides guidance for cities to promote traffic safety through urban and street design. It discusses how over 1 million traffic deaths occur globally each year, primarily in low- and middle-income countries, with the majority being vulnerable road users. The economic costs of traffic crashes can be significant for some countries. The document outlines design principles for cities to improve safety, including reducing the need for vehicle travel through urban design, implementing traffic calming measures to reduce speeds, designing safer arterial corridors, and establishing connected bicycle networks. Specific design elements and measures are described that can help implement these principles, drawn from examples in cities around the world.
Global Plan for the Decade of Action for Road Safety 2011-2020EasySonho
The document outlines a global plan for a Decade of Action for Road Safety from 2011-2020 with the overall goal of stabilizing and reducing forecasted global road traffic fatalities. It details five pillars of activities for countries to implement at the national level to work towards this goal: 1) road safety management, 2) safer roads and mobility, 3) safer vehicles, 4) safer road users, and 5) post-crash response. These include adhering to UN conventions, designating a lead road safety agency, developing national strategies, and coordinating multi-sector partnerships to improve road safety management and activities.
United Nations General Assembly Informal dialogue on building resilience and ...Christina Parmionova
The world is at a crossroads in harnessing the potential of infrastructure connectivity. It
has been estimated that US$ 4.2 trillion can be saved by investing in more resilient
infrastructure due to reduced losses and damages, and lower recovery costs post-disaster.
For the SDGs to be achieved, and for a low-carbon, climate-resilient future to be unlocked,
US$ 6.9 trillion per year must be invested by 2030. The Sendai Framework for Disaster
Risk Reduction and the Paris Agreement call for sustainable and resilient infrastructure
to mitigate the effects of climate change and to future-proof existing assets.Reliable and s ustainable infrastructure can set countries towards a development path
marked by reduced infrastructure damage, minimized systemic risk, and fast-paced progress towards the SDGs. This will require an unprecedented scale up of investments
from both the public and private sectors. Delaying this process will only increase the costs
and lead to stagnant development, abandoned infrastructure assets, and escalating existential risk. Promoting and facilitating sustainable development through regional and inter-regional infrastructure connectivity will allow for a fast-streamed attainment of the
2030 Agenda for Sustainable Development across both developed and developing
countries.
Autonomous vehicles for smart and sustainable cities an in-depth exploratio...Araz Taeihagh
Amidst rapid urban development, sustainable transportation solutions are required to meet the increasing demands for mobility whilst mitigating the potentially negative social, economic, and environmental impacts. This study analyses autonomous vehicles (AVs) as a potential transportation solution for smart and sustainable development. We identified privacy and cybersecurity risks of AVs as crucial to the development of smart and sustainable cities and examined the steps taken by governments around the world to address these risks. We highlight the literature that supports why AVs are essential for smart and sustainable development. We then identify the aspects of privacy and cybersecurity in AVs that are important for smart and sustainable development. Lastly, we review the efforts taken by federal governments in the US, the UK, China, Australia, Japan, Singapore, South Korea, Germany, France, and the EU, and by US state governments to address AV-related privacy and cybersecurity risks in-depth. Overall, the actions taken by governments to address privacy risks are mainly in the form of regulations or voluntary guidelines. To address cybersecurity risks, governments have mostly resorted to regulations that are not specific to AVs and are conducting research and fostering research collaborations with the private sector.
This document provides a seminar report on highway safety. It discusses various topics related to road safety, including definitions of road safety, types of road users and safety measures for them, classifications of roads, and interventions to improve safety. It also summarizes traffic rules and regulations in India, different types of road signs and their purpose, and provides examples of essays related to ensuring safety on roads.
The document presents the Traffic Safety Best Practices Matrix, a tool created to help U.S. cities identify strategies being used domestically and internationally to advance Vision Zero. The matrix compiles over 100 measures and policies from various cities and countries into categories like engineering, education, and policy. It also rates the effectiveness of each measure as proven, recommended, or unknown based on evaluations. The goal is to help cities pursuing Vision Zero develop comprehensive strategies, benchmark their progress, and learn from other jurisdictions.
The document discusses a report on road safety in Costa Rica conducted by the International Road Assessment Programme (iRAP). Key findings of the report include:
1) IRAP inspected 2,800km of Costa Rica's roads and developed recommendations for cost-effective safety improvements like footpaths, shoulders, and intersection upgrades that could prevent 14,700 deaths and injuries over 20 years at a cost of $26 billion with a benefit-cost ratio of 22.
2) The Costa Rica Minister for Transportation supports implementing IRAP's recommendations to prioritize road safety and reduce the expected 100,000 deaths and injuries over the next 20 years.
3) The President of the Automobile Club of Costa Rica thanks
Esta presentación de WUF7 es sobre necesidad de crear más acceso a de transporte digno y mejores condiciones de vida para personas a población.Muestra la situación actual en muchos aspectos difíciles de manejar, que se pueden solucionar con pequeños esfuerzos.
This WUF7 presentation is about the necessity to create a better access to a better transport and life conditions for the poor. Showing the acual situation for difficult in some aspects which are difficult to manage.
Lugar: Medellín
Evento: Wuf7
Fecha: Abril de 2014
Road Safety Audit of Balsamand Hisar Bypass Road MDR 107ijtsrd
Now a days, in each ten minutes, we tend to lose one human life because of road accidents. Within the world, Bharat has world’s largest weighty traffic and accidents too its necessary to provide the safety to roads. Road Safety Audit RSA could be a practice or methodology within which identification of existing or future road on basis of questions of safety and provision of safety remedial measures on that. Road Safety Audit RSA is a formal method for assessing accident potential and safety performance within the provision of latest road schemes and schemes for the improvement and maintenance of existing roads.In this study, the section of road from “Balsamand – Hisar Bypass Road MDR 107 †is undertaken. Road taken having appreciable traffic throughout day time and a few black spots on the road wherever accidents could happen and in depth analysis of road from “Balsamand – Hisar Bypass Road MDR 107 †is administered on the premise of information assortment like traffic behaviour study, road safety signs and symbols, etc. The purpose of study is to examine the road within the terms of the security measures, road situation, any kind of flaws and to counsel the alleviative and preventive actions for the chosen section of road for audit. Ravi Saharan | Vikas "Road Safety Audit of Balsamand-Hisar Bypass Road (MDR 107)" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-5 , August 2022, URL: https://www.ijtsrd.com/papers/ijtsrd50419.pdf Paper URL: https://www.ijtsrd.com/engineering/civil-engineering/50419/road-safety-audit-of-balsamandhisar-bypass-road-mdr-107/ravi-saharan
Transportation engineering holds significant importance for engineering students across various disciplines, as it encompasses a broad range of principles, practices, and technologies essential for designing, planning, and managing transportation systems. In this comprehensive essay, we will explore the importance of transportation engineering to engineering students, highlighting its relevance, applications, and impact in shaping the modern world.
**1. Foundation of Infrastructure Development:**
Transportation engineering serves as the foundation of infrastructure development, providing the necessary expertise to design, construct, and maintain transportation systems essential for societal progress. Engineering students studying transportation gain insights into the planning, design, and construction of roads, bridges, railways, airports, and other critical infrastructure elements. By understanding the principles of transportation engineering, students contribute to the development of safe, efficient, and sustainable transportation networks that facilitate economic growth, enhance connectivity, andCertainly! Let's delve deeper into each aspect and expand on the purpose of informative or educational books within education:
**Foundation of Knowledge:**
Educational books lay the groundwork for understanding complex subjects by presenting information in a structured and organized manner. They serve as primary resources for students and educators alike, offering comprehensive coverage of foundational concepts, theories, and principles. By providing a solid foundation of knowledge, these books enable learners to build upon their understanding and delve into more advanced topics with confidence.
**Fostering Critical Thinking:**
Educational books cultivate critical thinking skills by encouraging readers toEducational books play a vital role in shaping education, serving as pillars of knowledge dissemination, critical thinking, and personal growth. Their purpose extends far beyond the mere transfer of information; they are instrumental in fostering curiosity, instilling a love for learning, and equipping individuals with the skills necessary to navigate an ever-evolving world. In this essay, we will explore the multifaceted purpose of informative or educational books within the realm of education.
**Foundation of Knowledge:**
At the core of educational books lies their role as foundational sources of knowledge. They provide a structured framework through which learners can acquire information about various subjects, ranging from mathematics and science to literature and history. These books serve as repositories of human understanding, distilling complex concepts into digestible formats accessible to readers of all levels. By offering comprehensive coverage of topics, they lay the groundwork upon knowledges.
Paper makes an attempt to showcase role and importance of making roads in making urban areas safer, productive, effective, efficient better places to live and work by avoiding colossal loss of life and property due to large accidents taking place on such roads. It also brings out context, issues and options which can help in making urban roads safer. Global experiences have also been included to showcase the best practices.
Options for Making Urban Roads Safe discusses various options for improving road safety in urban areas. It notes that India has a high number of road accidents and deaths each year. Some key issues contributing to unsafe roads are a lack of priority given to road safety, poor infrastructure, mixing of vehicle types, and lack of involvement from communities and stakeholders. The document then provides numerous options that could be implemented to enhance road safety, such as establishing clear visions and targets for reducing accidents, prioritizing pedestrians and cyclists over vehicles, improving road design standards, increasing education and awareness programs, strengthening legal frameworks, and improving enforcement. Taking a holistic, collaborative approach involving all stakeholders is emphasized as important for effectively addressing the challenge of urban road safety
If cities are known to be the motive force for promoting the economy , then transportation emrges most critical for any community/city/ nation to remain effectice, efficient and productive. Transportation is becoming complex due to large varieties of vehicles occupying the road space. Categories of vehicles include fast, slow, mechanised, non-mechanised, animal/ fossil fuel driven vehicles. Looking at the entire context, traffic and travel have emerged as the two worst gifts of urbanisation. However, travel remian the most unproductive and most polluting activity when undertaken by fossil fuel driven. vehicles. City becoming source of global warming and having large carbon footprints can be attributed to the manner people are made to travel. Genesis of major transportation problems remains the way cities are planned, developed and managed.. Focus on planning for vrhilces and promoting mobility remains the major causes for transportation related problems. Paper looks at the options of making transportation more sustainable by planning for people and promoting accessibility. In additios, using technology,planning as a medium and promoting decentralized planning have been defined as the mechanism for minimising traffic related issues and reducing loss of human life on the roads, known to be one of the largest killers globally..Text also looks at few of the global.good practices to make urban roads safe and sustainable
United Nations World Oceans Day 2024; June 8th " Awaken new dephts".Christina Parmionova
The program will expand our perspectives and appreciation for our blue planet, build new foundations for our relationship to the ocean, and ignite a wave of action toward necessary change.
UN WOD 2024 will take us on a journey of discovery through the ocean's vastness, tapping into the wisdom and expertise of global policy-makers, scientists, managers, thought leaders, and artists to awaken new depths of understanding, compassion, collaboration and commitment for the ocean and all it sustains. The program will expand our perspectives and appreciation for our blue planet, build new foundations for our relationship to the ocean, and ignite a wave of action toward necessary change.
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This document summarizes key lessons learned from 2020 regarding transport planning and the relationship between transport and health. It notes that scenario planning is important for dealing with uncertainty and discontinuities, rather than relying on forecasts of incremental change. The pandemic illustrated that transport is a vector for disease diffusion and highlighted health impacts of mobility choices. It disrupted collective transport but also reduced air pollution and encouraged active travel temporarily. Going forward, collaborative scenario planning is needed, and questions remain around sustainability of public transport models and independent mobility post-pandemic.
Road Safety Foundation: Making Road Safety PayAgeas UK
The document recommends that the UK Department for Transport develop a 10-year "Towards Zero" strategy to reduce road deaths and injuries, with performance goals and tracking costs for individual authorities. It also recommends establishing a task force of stakeholders to provide leadership. The strategy should be published mid-decade.
High-level Meeting on Sustainable Transport - United Nations General Assembly...Christina Parmionova
Sustainable transport is crucial to address the special needs of countries in special situations by establishing and promoting efficient transport systems that particularly link least developed countries (LDCs), landlocked developing countries (LLDCs) and small island developing states (SIDS) more efficiently to international markets and global supply chains. Sustainable transport systems are also critical to empower vulnerable people, including by providing rural communities with access to major roads, rail lines and public and non-motorized transport options that enable access to economic and social activities. At the same time, accessible, affordable and sustainable transport services are still lacking in many parts of the world, especially in developing countries, constraining mobility and
connectivity to regional and global transport networks. Over 1 billion people still lack access to an all-weather road and adequate transport services. Even where transport
infrastructure and systems are present, they may not provide safe, affordable, and
convenient access for all, particularly for groups in vulnerable situations such as the women, children and youth, older persons, and persons with disabilities, with the poor
often spending one fifth of their income on public transport. Deaths and injuries from
road traffic accidents continue to rise, road traffic crashes kill approximately 1.3 million
people worldwide annually, with disproportionate burden falling on the healthcare
systems and economies in developing countries. Existing transport networks can also face challenges, such as congestion, poor maintenance, and lack of resilience to disasters, extreme weather events and climate
change. It was estimated that additional spending for roads is likely to amount to 2% of
GDP in low-income developing countries to meet the SDG objectives, which do not
include other components of sustainable transport, such as railways, ports, and mass
transit. There is a need to develop and enhance multimodal transport systems that fully utilize and integrate public transport systems, rail, maritime, inland shipping, ferry, and air transport, as well as non-motorized transport such as cycling and walking. Passenger and freight transport, with different stakeholders, require differentiated policy solutions and investment models. As maritime transport accounts for over 80%, by volume, of all global freight, it is
essential to support countries with the lowest shipping connectivity. These countries often face a vicious cycle, of low trade volumes that discourage investments in transport
connectivity, and low connectivity that makes trade even more costly and uncompetitive.
Centering Safety at Metropolitan Planning Organizationsvisionzeronetwork
Through regional planning, funding and policy, MPOs are uniquely positioned to embrace Vision Zero and align their efforts with the goal of saving lives.
Centering Safety at Metropolitan Planning OrganizationsKathleen Ferrier
Through regional planning, funding and policy, MPOs are uniquely positioned to embrace Vision Zero and align their efforts with the goal of saving lives.
MPOs are uniquely positioned to embrace Vision Zero and save lives. MPOs provide funding based on long range transportation plans, they serve as a regional nexus for crash data and performance measurement, and they have the ability to stimulate a collaborative process to address issues that no single jurisdiction can tackle alone. This resource highlights the role that MPOs can play in Vision Zero. We feature successful strategies on safety measurement, funding, policy, and planning from MPOs across the country
The document provides guidance for cities to promote traffic safety through urban and street design. It discusses how over 1 million traffic deaths occur globally each year, primarily in low- and middle-income countries, with the majority being vulnerable road users. The economic costs of traffic crashes can be significant for some countries. The document outlines design principles for cities to improve safety, including reducing the need for vehicle travel through urban design, implementing traffic calming measures to reduce speeds, designing safer arterial corridors, and establishing connected bicycle networks. Specific design elements and measures are described that can help implement these principles, drawn from examples in cities around the world.
Global Plan for the Decade of Action for Road Safety 2011-2020EasySonho
The document outlines a global plan for a Decade of Action for Road Safety from 2011-2020 with the overall goal of stabilizing and reducing forecasted global road traffic fatalities. It details five pillars of activities for countries to implement at the national level to work towards this goal: 1) road safety management, 2) safer roads and mobility, 3) safer vehicles, 4) safer road users, and 5) post-crash response. These include adhering to UN conventions, designating a lead road safety agency, developing national strategies, and coordinating multi-sector partnerships to improve road safety management and activities.
United Nations General Assembly Informal dialogue on building resilience and ...Christina Parmionova
The world is at a crossroads in harnessing the potential of infrastructure connectivity. It
has been estimated that US$ 4.2 trillion can be saved by investing in more resilient
infrastructure due to reduced losses and damages, and lower recovery costs post-disaster.
For the SDGs to be achieved, and for a low-carbon, climate-resilient future to be unlocked,
US$ 6.9 trillion per year must be invested by 2030. The Sendai Framework for Disaster
Risk Reduction and the Paris Agreement call for sustainable and resilient infrastructure
to mitigate the effects of climate change and to future-proof existing assets.Reliable and s ustainable infrastructure can set countries towards a development path
marked by reduced infrastructure damage, minimized systemic risk, and fast-paced progress towards the SDGs. This will require an unprecedented scale up of investments
from both the public and private sectors. Delaying this process will only increase the costs
and lead to stagnant development, abandoned infrastructure assets, and escalating existential risk. Promoting and facilitating sustainable development through regional and inter-regional infrastructure connectivity will allow for a fast-streamed attainment of the
2030 Agenda for Sustainable Development across both developed and developing
countries.
Autonomous vehicles for smart and sustainable cities an in-depth exploratio...Araz Taeihagh
Amidst rapid urban development, sustainable transportation solutions are required to meet the increasing demands for mobility whilst mitigating the potentially negative social, economic, and environmental impacts. This study analyses autonomous vehicles (AVs) as a potential transportation solution for smart and sustainable development. We identified privacy and cybersecurity risks of AVs as crucial to the development of smart and sustainable cities and examined the steps taken by governments around the world to address these risks. We highlight the literature that supports why AVs are essential for smart and sustainable development. We then identify the aspects of privacy and cybersecurity in AVs that are important for smart and sustainable development. Lastly, we review the efforts taken by federal governments in the US, the UK, China, Australia, Japan, Singapore, South Korea, Germany, France, and the EU, and by US state governments to address AV-related privacy and cybersecurity risks in-depth. Overall, the actions taken by governments to address privacy risks are mainly in the form of regulations or voluntary guidelines. To address cybersecurity risks, governments have mostly resorted to regulations that are not specific to AVs and are conducting research and fostering research collaborations with the private sector.
This document provides a seminar report on highway safety. It discusses various topics related to road safety, including definitions of road safety, types of road users and safety measures for them, classifications of roads, and interventions to improve safety. It also summarizes traffic rules and regulations in India, different types of road signs and their purpose, and provides examples of essays related to ensuring safety on roads.
The document presents the Traffic Safety Best Practices Matrix, a tool created to help U.S. cities identify strategies being used domestically and internationally to advance Vision Zero. The matrix compiles over 100 measures and policies from various cities and countries into categories like engineering, education, and policy. It also rates the effectiveness of each measure as proven, recommended, or unknown based on evaluations. The goal is to help cities pursuing Vision Zero develop comprehensive strategies, benchmark their progress, and learn from other jurisdictions.
The document discusses a report on road safety in Costa Rica conducted by the International Road Assessment Programme (iRAP). Key findings of the report include:
1) IRAP inspected 2,800km of Costa Rica's roads and developed recommendations for cost-effective safety improvements like footpaths, shoulders, and intersection upgrades that could prevent 14,700 deaths and injuries over 20 years at a cost of $26 billion with a benefit-cost ratio of 22.
2) The Costa Rica Minister for Transportation supports implementing IRAP's recommendations to prioritize road safety and reduce the expected 100,000 deaths and injuries over the next 20 years.
3) The President of the Automobile Club of Costa Rica thanks
Esta presentación de WUF7 es sobre necesidad de crear más acceso a de transporte digno y mejores condiciones de vida para personas a población.Muestra la situación actual en muchos aspectos difíciles de manejar, que se pueden solucionar con pequeños esfuerzos.
This WUF7 presentation is about the necessity to create a better access to a better transport and life conditions for the poor. Showing the acual situation for difficult in some aspects which are difficult to manage.
Lugar: Medellín
Evento: Wuf7
Fecha: Abril de 2014
Road Safety Audit of Balsamand Hisar Bypass Road MDR 107ijtsrd
Now a days, in each ten minutes, we tend to lose one human life because of road accidents. Within the world, Bharat has world’s largest weighty traffic and accidents too its necessary to provide the safety to roads. Road Safety Audit RSA could be a practice or methodology within which identification of existing or future road on basis of questions of safety and provision of safety remedial measures on that. Road Safety Audit RSA is a formal method for assessing accident potential and safety performance within the provision of latest road schemes and schemes for the improvement and maintenance of existing roads.In this study, the section of road from “Balsamand – Hisar Bypass Road MDR 107 †is undertaken. Road taken having appreciable traffic throughout day time and a few black spots on the road wherever accidents could happen and in depth analysis of road from “Balsamand – Hisar Bypass Road MDR 107 †is administered on the premise of information assortment like traffic behaviour study, road safety signs and symbols, etc. The purpose of study is to examine the road within the terms of the security measures, road situation, any kind of flaws and to counsel the alleviative and preventive actions for the chosen section of road for audit. Ravi Saharan | Vikas "Road Safety Audit of Balsamand-Hisar Bypass Road (MDR 107)" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-5 , August 2022, URL: https://www.ijtsrd.com/papers/ijtsrd50419.pdf Paper URL: https://www.ijtsrd.com/engineering/civil-engineering/50419/road-safety-audit-of-balsamandhisar-bypass-road-mdr-107/ravi-saharan
Transportation engineering holds significant importance for engineering students across various disciplines, as it encompasses a broad range of principles, practices, and technologies essential for designing, planning, and managing transportation systems. In this comprehensive essay, we will explore the importance of transportation engineering to engineering students, highlighting its relevance, applications, and impact in shaping the modern world.
**1. Foundation of Infrastructure Development:**
Transportation engineering serves as the foundation of infrastructure development, providing the necessary expertise to design, construct, and maintain transportation systems essential for societal progress. Engineering students studying transportation gain insights into the planning, design, and construction of roads, bridges, railways, airports, and other critical infrastructure elements. By understanding the principles of transportation engineering, students contribute to the development of safe, efficient, and sustainable transportation networks that facilitate economic growth, enhance connectivity, andCertainly! Let's delve deeper into each aspect and expand on the purpose of informative or educational books within education:
**Foundation of Knowledge:**
Educational books lay the groundwork for understanding complex subjects by presenting information in a structured and organized manner. They serve as primary resources for students and educators alike, offering comprehensive coverage of foundational concepts, theories, and principles. By providing a solid foundation of knowledge, these books enable learners to build upon their understanding and delve into more advanced topics with confidence.
**Fostering Critical Thinking:**
Educational books cultivate critical thinking skills by encouraging readers toEducational books play a vital role in shaping education, serving as pillars of knowledge dissemination, critical thinking, and personal growth. Their purpose extends far beyond the mere transfer of information; they are instrumental in fostering curiosity, instilling a love for learning, and equipping individuals with the skills necessary to navigate an ever-evolving world. In this essay, we will explore the multifaceted purpose of informative or educational books within the realm of education.
**Foundation of Knowledge:**
At the core of educational books lies their role as foundational sources of knowledge. They provide a structured framework through which learners can acquire information about various subjects, ranging from mathematics and science to literature and history. These books serve as repositories of human understanding, distilling complex concepts into digestible formats accessible to readers of all levels. By offering comprehensive coverage of topics, they lay the groundwork upon knowledges.
Paper makes an attempt to showcase role and importance of making roads in making urban areas safer, productive, effective, efficient better places to live and work by avoiding colossal loss of life and property due to large accidents taking place on such roads. It also brings out context, issues and options which can help in making urban roads safer. Global experiences have also been included to showcase the best practices.
Options for Making Urban Roads Safe discusses various options for improving road safety in urban areas. It notes that India has a high number of road accidents and deaths each year. Some key issues contributing to unsafe roads are a lack of priority given to road safety, poor infrastructure, mixing of vehicle types, and lack of involvement from communities and stakeholders. The document then provides numerous options that could be implemented to enhance road safety, such as establishing clear visions and targets for reducing accidents, prioritizing pedestrians and cyclists over vehicles, improving road design standards, increasing education and awareness programs, strengthening legal frameworks, and improving enforcement. Taking a holistic, collaborative approach involving all stakeholders is emphasized as important for effectively addressing the challenge of urban road safety
If cities are known to be the motive force for promoting the economy , then transportation emrges most critical for any community/city/ nation to remain effectice, efficient and productive. Transportation is becoming complex due to large varieties of vehicles occupying the road space. Categories of vehicles include fast, slow, mechanised, non-mechanised, animal/ fossil fuel driven vehicles. Looking at the entire context, traffic and travel have emerged as the two worst gifts of urbanisation. However, travel remian the most unproductive and most polluting activity when undertaken by fossil fuel driven. vehicles. City becoming source of global warming and having large carbon footprints can be attributed to the manner people are made to travel. Genesis of major transportation problems remains the way cities are planned, developed and managed.. Focus on planning for vrhilces and promoting mobility remains the major causes for transportation related problems. Paper looks at the options of making transportation more sustainable by planning for people and promoting accessibility. In additios, using technology,planning as a medium and promoting decentralized planning have been defined as the mechanism for minimising traffic related issues and reducing loss of human life on the roads, known to be one of the largest killers globally..Text also looks at few of the global.good practices to make urban roads safe and sustainable
Similar to Global Plan for Road Safety ( 2021-2030) (20)
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3. This Global Plan has been developed by the
World Health Organization and the United Nations
Regional Commissions, in cooperationwith partners
in the United Nations Road Safety Collaboration
and other stakeholders, as a guiding document
to support the implementation of the Decade of
Action 2021–2030 and its objectives.
3
4. 9, 43, 2
The Global Plan describes what is needed to
achieve that target, and calls on governments
& partners to implement an integrated
SAFE SYSTEM
APPROACH
W
H
A
T
T
O
D
O
?
HOW
Multimodal transport
& land-use planning
Safe road
infrastructure
Safe vehicles
Safe road use Post-crash
response
Legal
frameworks
Gender
4
5. during that
period
BY AT
LEAST
UN General Assembly Resolution 74/299 declared a
Decade ofAction for Road Safety 2021-2030,
with the target to reduce road traffic deaths & injuries
TO DO IT? WHO TO DO IT?
Government
Civil society Private sector
Funders UN agencies
Financing
Speed
management
Capacity
development
Focus on low- and
middle-income
countries
Technologies
For further information, visit:
DECADE OF ACTION FOR ROAD SAFETY 2021-2030
5
6. Road safety – where next?
Road safety is at a crossroads
INTRODUCTION
Globally, road traffic crashes cause nearly 1.3 million
preventable deaths and an estimated 50 million injuries
each year – making it the leading killer of children
and young people worldwide. As things stand, they
are set to cause a further estimated 13 million deaths
and 500 million injuries during the next decade and
hinder sustainable development, particularly in low-
and middle-income countries. These unacceptable
numbers, both in absolute and relative terms, have
remained largely unchanged for the past 20 years,
despite the painstaking work of the United Nations and
other road safety bodies.
Recognizing the importance of the problem and the
need to act, governments from around the world
declared unanimously — through UN General Assembly
Resolution 74/299 — a Second Decade ofAction for Road
Safety 2021–2030 with the explicit target to reduce road
deaths and injuries by at least 50% during that period.
This plan describes the actions needed to achieve that
target. It is aimed at senior policy makers and should
serve as a blueprint for the development of national and
local plans and targets. As we embark on the Second
Decade of Action for Road Safety, governments and
global stakeholders must choose between “business
as usual” – in the hopes that this will be enough to
significantly reduce the number of deaths – or acting
boldly and decisively, using the tools and knowledge
gained from the last Decade ofAction to change course.
The Global Plan for the Decade of Action for Road
Safety 2021-2030 rejects business as usual and calls
on governments and stakeholders to take a new path –
one that prioritizes and implements an integrated Safe
System approach that squarely positions road safety
as a key driver of sustainable development. It also calls
for actions that help the world hit the target of a 50%
reduction in the number of road traffic deaths and
serious injuries by 2030.
6
7. And there is hope
Tremendous opportunity for progress has been
created by a powerful set of factors, including the
announcement of a Second Decade of Action for
Road Safety by the United Nations General Assembly;
renewed political commitment from Member States
and the strong foundations laid by the last Decade of
Action for Road Safety; and the inclusion of road safety
in Sustainable Development Goals targets 3.6 and 11.2.
In addition, three Global Ministerial Conferences, the
appointment of a Special Envoy for Road Safety by the
United Nations Secretary General and the establishment
of the United Nations Road Safety Fund indicate clearly
the increased importance accorded to road safety and
enhanced mechanisms to improve it globally.
The inclusion of specific road safety targets in Agenda
2030 reflects universal recognition that death and injury
from road crashes are now among the most serious
threats for countries’ sustainable development. This
means that road safety cannot be compromised or
traded-off in order to achieve other social needs. In
this context, road safety should not be approached as
a stand-alone issue but as an integrated component of
many different policy agendas, including child health,
climate action, gender, and equity. As highlighted by
the COVID-19 pandemic, the need for mobility itself
will undoubtedly evolve in the next decade and this will
inevitably drive changes to transport systems in ways
that are both expected and unexpected. Ensuring that
these changes do not result in death or injurywill require
constant vigilance and adaptation.
Making safety a core value
The constant evolution of transport worldwide presents
us with multiple challenges: greenhouse gas emissions
and climate change; air pollution; fossil fuel reliance; an
epidemic of chronic diseases; and the risks of road death
and injury. Rapidly evolving technology, increasing
density and population growth in urban areas, along
with the emergence and growing presence of micro-
mobility and the use of mobility services are indicative
of the challenges that lie ahead.
But mobility systems truly based on safety will have
a holistically beneficial impact on our health; our
environment; on reducing the social and economic toll
taken by road safety tragedies; and on women’s role in
our mobility and transport systems. Placing safety at
the core of our road safety efforts will automatically
make safe mobility a human right. It will push it up the
global agenda and create a new impetus for increased
commitment from governments, corporations and
international organizations to implement measures
that can significantly reduce road trauma.
The time to act is now: the intolerable death and injury
toll, and the start of the next Decade of Road Safety,
give the global road safety community the impetus to
do things differently.
during that
period
UN General Assembly Resolution 74/299 declared a
Decade ofAction for Road Safety 2021–2030,
with the target to reduce road traffic deaths injuries
7
8. 9, 43, 2
Vision for the Global Plan
PART I
Mobility is integral to nearly every aspect of our daily
lives. We step from our homes into a road system that
leads us to work and school, to get our food, and to
many of our daily family and social needs. The influence
of the road transport system is so pervasive that its
safety – or lack thereof – affects a wide range of basic
human needs. As such, ensuring the safety of roads and
enabling sustainable mobility plays an important role
in reducing poverty and inequities, increasing access
to employment and education, as well as mitigating
the impact of climate change. In fact, the efficiency,
accessibility and safety of transport systems directly
and indirectlycontribute to the realization of manySDGs.
On its own, the road safety movement is limited in its
potential reach and influence and is often subordinate
to other social needs. But if road safety is seen as a
necessity that can facilitate progress in meeting social
needs – ranging from gender equity to environmental
sustainability – its potential can be greatly expanded.
The Global Plan describes what is needed to achieve that target,
and calls on governments partners to implement an integrated
8
9. Who this Global Plan is for
This plan aims to inspire national and local government,
as well other stakeholders who can influence road
safety (including civil society, academia, the private
sector, donors, community and youth leaders, and other
stakeholders) as they develop national and local action
plans and targets for the Decade of Action.
Building on the Safe System approach
The Safe System approach – a core feature of the
Decade of Action – recognizes that road transport
is a complex system and places safety at its core. It
also recognizes that humans, vehicles and the road
infrastructure must interact in a waythat ensures a high
level of safety. A Safe System therefore:
anticipates and accommodates human errors;
incorporates road and vehicle designs that limit crash
forces to levels that are within human tolerance to
prevent death or serious injury;
motivates those who design and maintain the
roads, manufacture vehicles, and administer safety
programmes to share responsibility for safety with
road users, so that when a crash occurs, remedies
are sought throughout the system, rather than solely
blaming the driver or other road users;
pursues a commitment to proactive and continuous
improvement of roads and vehicles so that the entire
system is made safe rather than just locations or
situations where crashes last occurred; and
adheres to the underlying premise that the transport
system should produce zero deaths or serious injuries
and that safety should not be compromised for the
sake of other factors such as cost or the desire for
faster transport times.
9
10. The following recommendations draw from proven and
effective interventions and best practices for preventing
road trauma and provide a comprehensive overview of
actions to implement and strengthen Safe Systems.
These recommendations are not prescriptive but can be
used to inform the development of national road safety
action plans that are tailored to local contexts, available
resources and capacity.
Recommended actions
Multimodal transport and land-use planning
PART II
With about 70% of the global population expected to
live in urban settings by 2030, increased demand for
urban mobility will exceed the capacity of systems
that rely largely on private vehicles such as cars and
motorcycles. Investment in public transport systems
to facilitate safe and efficient movement of large and
growing populations is therefore central to addressing
this issue. Public transport systems such as buses,
trams and commutertrains carry more people compared
to private cars and are generally more affordable. They
reduce exposure to crashes and are a key avenue to
improve safety, as stressed in SDG target 11.2.
Multimodal transport and land-use planning is an
important starting point for implementing a Safe
System. It establishes the optimal mix of motorized
and non-motorized transport modes to ensure safety
and equitable access to mobility, while responding to
the diverse needs and preferences of a population.
Multimodal transport and land-use planning should
be adapted to local contexts and climates. Land use
planning must include consideration of travel demand
management, mode choice and the provision of safe
and sustainable journeys for all, particularly for the
healthiest and cleanest modes of transport but often
10
11. most neglected: walking, cycling and public transport.
This should be accompanied by standards that explicitly
avoid or mitigate potential road safety risks and require
minimum safety performance for all expected modes,
abilities and journeys.
The availability of parking for bicycles and private
vehicles at bus stops and train stations, for example,
can facilitate multimodal commutes. In addition to
eliminating risks to pedestrians and cyclists from motor
vehicle traffic, people need to feel safe. To this end,
infrastructural investments and policies that improve
people’s perceived safety, both from traffic and crime,
and especially those that address gender safety
concerns, are important prerequisites to encouraging
multimodal transport and active mobility.
Recommended actions to encourage multimodal transport and land-use planning
Implement policies that promote compact urban design.
Implement policies that lower speeds, and prioritize the needs of pedestrians, cyclists, and public transport
users.
Promote transit-oriented development to concentrate urban and commercial developments around mass
transit nodes.
Strategically locate – where feasible – public, subsidized, and workforce housing to provide convenient access
to high-capacity transit services.
Discourage the use of private vehicles in high density urban areas by putting restrictions on motor vehicle
users, vehicles, and road infrastructure, and provide alternatives that are accessible, safe, and easy to use,
such as walking, cycling, buses and trams.
Provide intermodal connectivity between transit and bike share schemes at major transit stops and create
transport connections for bicycle and pedestrian travel that reduce total travel time.
Construct (or reconstruct existing) transport networks to ensure that non-motorized modes of travel are as
safe as motorized ones, and most importantly serve the travel needs of all ages and abilities.
Promote positive marketing and use of incentives such as employer cost-sharing of public transport
subscriptions.
Box 1
11
12. Safe road infrastructure
Safe road infrastructure is essential to reduce road
trauma. Road infrastructure must be planned, designed,
built and operated to enable multimodal mobility,
including shared/public transport, and walking and
cycling. It must eliminate or minimize risks for all road
users, not just drivers, starting with the most vulnerable.
Minimum technical infrastructure standards are
required, covering the safety of pedestrians, cyclists,
motorcyclists, vehicle occupants, public transport
users, freight operators and other mobility users. These
standards must include basic features such as vertical
and horizontal marking (signs and painting); sidewalks;
safe crossings; cycle paths; motorcycle lanes; bus
lanes; safe roadsides; segregation of different modes
of traffic; median separation of high-speed traffic; safe
intersection design; and speed management suitable
for the location, desired amenity and type of traffic. The
physical and digital infrastructure needs for advanced
driverassistance technologies and autonomousvehicles
also require specification.
Logical and intuitive infrastructure design should be
used for speed management to ensure the safety of
all road users (e.g. town entry treatments, roadworks).
In addition to improving safety, road infrastructure
should enhance accessibility, including for persons
with disabilities, and facilitate transfer from one mode
to another. Guidance on appropriate standards for
various safety components has been developed at
global and regional level and can be used by countries
when developing their own standards.
Recommended actions to improve the safety of road infrastructure
Develop functional classifications and desired safety performance standards for each road user group at the
geographic land-use and road corridor level.
Review and update legislation and local design standards that consider road function and the needs of all
road users, and for specific zones.
Specify a technical standard and star rating target for all designs linked to each road user, and the desired
safety performance standard at that location.
Implement infrastructure treatments that ensure logical and intuitive compliance with the desired speed
environment (e.g. 30 km/h urban centres; ≤ 80 km/h undivided rural roads; 100 km/h expressways).
Undertake road safety audits on all sections of new roads (pre-feasibility through to detailed design) and
complete assessments using independent and accredited experts to ensure a minimum standard of three
stars or better for all road users.
Undertake crash-risk mapping (where crash data are reliable) and proactive safety assessments and
inspections on the target network with a focus on relevant road user needs as appropriate.
Set a performance target for each road user based on the inspection results with clear measurable metrics
at the road-attribute level (e.g. sidewalk provision).
Box 2
12
13. Vehicle safety
Vehicles should be designed to ensure the safety of
those inside and those outside them. To improve vehicle
safety, different features can be integrated into vehicle
design either to avoid crashes (active safety) or to
reduce the injury risk for occupants and other road users
when a crash occurs (passive safety). Although several
types of technological solutions have been developed,
they have penetrated countries to a different extent,
and what is integrated as “standard equipment” in new
vehicles differs between countries. In fact, depending
on regulations in place per destination market, vehicles
are produced with different safety features. Automobile
companies frequently “de-specify” life-saving features
in newer models sold in countries where regulatory
frameworks do not require these features.
There is a needto applyharmonized legislative standards
for vehicle design and technology to ensure a uniform
and acceptable level of safety worldwide. Governments
should provide, through legislation, a minimum set of
safetystandards forvehicles, considering all “traditional”
categories of vehicles, including passenger cars, vans,
trucks, buses, and powered two- and three-wheelers,
but also “informal” modes prevalent in many countries
(e.g. tuk-tuk, skylabs, jeepneys).
Recommended actions to ensure vehicle safety
Require high-quality harmonized safety standards for new and used motorvehicles, safety belts, child-restraint
systems and motorcycle helmets, including:
• standards on front and side impact to ensure that occupants are protected in a front and side-impact crash;
• safety belts and safety belt anchorage for all seats to ensure that safety belts are fitted in vehicles when
they are manufactured and assembled;
• ISOFIX child-restraint anchor points to secure the child-restraint systems attached directly to the frame of
the vehicle to prevent misuse;
• electronic stability control to prevent skidding and loss of control in cases of oversteering or understeering;
• advanced emergency braking to reduce collisions;
• pedestrian protection standards to reduce the severity of impact with a motor vehicle;
• motorcycle helmets certified according to international harmonized standards;
• anti-lock braking system and daytime running lights for motorcycles;
• intelligent speed assistance systems to help drivers keep to speed limits;
• eCall or Accident Emergency Call Systems (AECS) to trigger an emergency response by an in-vehicle sensor.
Ensure that high-quality, harmonized safety standards are kept throughout the full lifecycle of the vehicle.
This can be done, for example, through:
• mandatory certification and registration systems for new and used vehicles based on established safety
requirements and combined with routine inspections;
• regulations for the export and import of used vehicles that are accompanied by inspections at entry and
exit points, and mandatory periodic technical inspection of vehicles; and
• building demand for safer vehicles by encouraging independent new car assessment programs.
Box 3
13
14. UNvehicle regulations agreements have been developed
to help countries set rules to provide and implement
safety standards in the production of vehicles and
their parts as well as periodic technical inspections
throughout their lifetime. Once standards are mandated,
there is then a need to ensure that these standards are
integrated into – and kept throughout – the full lifecycle
of the vehicle. This includes vehicle production, sale,
maintenance or re-sale, and movement through import
or export. In this regard, governments should establish
mechanisms for the periodic assessment of vehicles
to ensure that all new and in-use vehicles comply with
basic vehicle safety regulations.
In parallel to regulatory action, governments should
encourage the provision of consumer information on
vehicle safetythrough newcarassessment programmes
that are independent of vehicle manufacturers. These
programmes help buyers to make safer purchasing
decisions by providing them with independent
information on safety levels of vehicles tested. In
addition, these programmes can directly encourage
manufacturers to voluntarily fit safety technologies in
advance of any regulatory mandate to meet a demand
for safer vehicles. Both public and private sector fleets
can also contribute to improved vehicle safety by always
purchasing vehicles that at least exceed minimum UN
safety regulations.
Safe road use
Speeding, drink-driving, driver fatigue, distracted
driving, and non-use of safety belts, child restraints
and helmets are among the key behaviours contributing
to road injury and death. The design and operation of
the road transport system therefore takes account of
these behaviours through a combination of legislation,
enforcement and education. Road user behaviours
are also greatly influenced by vehicle safety features
and road infrastructure design, which should take into
account the needs of all road users and be implemented
in a way that is intuitive and easy to understand, and
which ensures that the easiest, most obvious actions
are the safest.
Legislation to address road user behaviour can be
enacted at national, subnational or continental level
depending on countries’ system of government.
Although traffic laws are an essential part of ensuring
safe road user behaviours, these laws must be enforced,
and appropriate penalties issued to deter road traffic
violations. Enforcement strategies should be backed
up by message-tested communications to guarantee
public understanding and support, and the involvement
of local stakeholders to maximize compliance. Similarly,
steps should be taken to prevent corruption in road
safety enforcement, which undermines public support
and legislative effectiveness.
Other factors, including basing insurance premiums on
driver performance, can incentivize drivers to comply
with established traffic laws and rules. Corporations –
both public and private – can develop protocols that
ensure safe operation of their fleets, including through
allowing for reasonable delays to prevent speeding,
setting limits on driving hours by delivery workers, and
monitoring the driving behaviours of drivers through
control devices such as speed-limiting devices and
tachographs.
14
15. Recommended actions to ensure safe road use
Enact and enforce road safety legislation:
• Set maximum speed limits considering the type and function of roads.
• Establish blood alcohol concentration (BAC) limits to prevent impaired driving (drink- and drug-driving) with
specific provisions for novice and professional drivers.
• Mandate the use of protective equipment (safety belts, child restraints and helmets).
• Restrict the use of handheld electronic devices while driving.
• Establish a dedicated enforcement agency, provide training and ensure adequate equipment for enforcement
activities.
Establish traffic rules and licensing requirements:
• Set out and regularly update traffic rules and codes of conduct for road users.
• Provide information and education on traffic rules.
• Set minimum age and vision requirements for drivers.
• Implement competency-based testing for driver licensing and adoption of graduated driver licensing for
novice drivers.
• Set limits for maximum driving time and minimum rest periods for professional drivers.
• Make liability insurance mandatory for operators of motorized vehicles.
Ensure road infrastructure takes account of the needs of all road users and is designed to facilitate safe
behaviours, including:
• clear road signage and road markings that are intuitive;
• use of roundabouts and traffic calming designs such as speed humps;
• physical separation of road users including use of protected bicycle lanes and pedestrian only zones.
Make use of vehicle safety features and technologies to support safe behaviours, including:
• automatic safety belts and seat-belt alerts;
• intelligent speed assistance;
• technologies to disable texting and or other forms of distraction while driving.
Box 4
15
16. Post-crash response
Post-crash care and survival is extremelytime-sensitive:
delays of minutes can make the difference between life
and death. For this reason, appropriate, integrated and
coordinated care should be provided as soon as possible
after a crash occurs. Mechanisms to ensure appropriate
action is taken include an alert system (e.g. a single
universal access call number) connected to relevant
professionals, who are in turn able to quickly dispatch
appropriate emergency services with trained personnel
and the necessary equipment through ambulances or
sometimes helicopters, when needed.
Communityfirst-respondertraining should be promoted
to greatly expand timely access to simple lifesaving
interventions, especially in areas where pre-hospital
services are limited and/or response times are long.
Suitable targets for first-responder training include
non-medical emergency responders such as police and
firefighters, and others whose occupations frequently
put them at the scene of road traffic crashes, for
example, professional drivers, including taxi drivers
and public transport drivers. To encourage action by
these first responders, countries should provide legal
protection for them (e.g. Good Samaritan laws).
Rehabilitation is an important component of post-crash
response and care systems, as these services can
greatly reduce lifelong disability among those injured
in a road traffic crash. Mechanisms to strengthen the
provision of, and access to, rehabilitation services for
crash victims should be put in place. This includes
embedding rehabilitative care into acute care systems,
making rehabilitation services available at lower
levels of care, and establishing appropriate financing
mechanisms such as road-user insurance schemes (e.g.
mandatory third-party liability). Providing protections
for people with disabilities to keep their jobs or be
hired in new jobs through the provision of incentives
for employers will further alleviate the socio-economic
consequences of permanent disability.
Comprehensive support systems for victims and their
families should also be put in place. Governments should
develop mechanisms to provide multidisciplinary crash
investigation and ensure justice. Financial and social
support should also be provided to victims and their
families if needed, to ensure that they are not pushed
into poverty because of the large costs sometimes
associated with prolonged treatment and rehabilitation,
or the loss of a breadwinner.
16
17. Recommended actions to improve the post-crash response
Provide a system to activate post-crash response:
• Unique emergency telephone number with national coverage.
• Coordination mechanism for dispatching response (fire brigade, police, ambulance).
Build response capacity among lay responders (non-medical professionals):
• Provide basic (EMS) training for lay providers such as taxi and public transport providers, police, fire brigade
etc.
• Enact Good Samaritan Laws to ensure protection for lay responders.
Strengthen professional medical care:
• Establish trauma registries in health-care facilities to gather information on the cause of injury and clinical
interventions.
• Build capacity of pre-hospital, hospital and rehabilitation care/services, and establish a basic package of
emergency care services for each level of the health system.
• Ensure 24-hour access – regardless of ability to pay – to operative and critical care services that are staffed
and equipped.
• Provide recovery and rehabilitation services to prevent permanent disability.
Establish requirements multidisciplinary, post-crash investigation:
• Mandate investigations for crashes resulting in serious and fatal injuries to inform prevention strategies and
apply an effective judicial response for victims and their families.
• Establish coordination mechanisms for post-crash investigation and sharing of data by relevant sectors.
• Establish appropriate financing mechanisms such as road-user insurance schemes (e.g. mandatory third-
party liability).
Provide social, judicial and, where appropriate, financial support to bereaved families and survivors.
Box 5
17
18. Ensuring effective implementation of the Safe System is essential to realizing road safety improvements in the next
decade. Actions should be based on evidence and, where possible, implementation research should be used to guide
local adaptation of proven measures.
Requirements for
implementation
Financing
PART III
Road safety is underfunded in most countries. Long-
term, sustainable investment is required for the
development of safe road infrastructure as well as
for interventions that can improve road safety. There
are significant opportunities to leverage existing
investments in broader areas of transport, particularly
transport and network planning, public transport, road
construction, traffic operation and maintenance. Rather
than serving as an “add-on” to these broader transport
activities, road safety must be embedded in, and integral
to, transport decision-making.
The primary responsibility for funding road safety
activities lies with national governments. Sustainable
sources offunding are likelythosethat are: home-grown;
clearly linked to the activity that is to be funded; driven
by a solid business case that shows strong economic
benefits; easy to collect and manage; and acceptable
to the public and politicians. Sources of sustainable
funding include central government allocations; local
government allocations; road user charges; levies on
private sector insurance; surplus from government
insurance; use of traffic fines; and social impact bonds.
18
19. However, to kickstart actions recommended in this plan,
short-term bridging funds may be required. There are
several sources of funding available to help commence
road safety activity, particularly for low- and middle-
income countries. These include multilateral lending
institutions; private sector sponsorship; merchandise
fundraising; international funding agencies; and
philanthropic contributions from foundations and
individuals.
Legal frameworks
United Nations (UN) road safety legal instruments
provide a strong foundation for countries to build
domestic legal frameworks and systems that contribute
to road safety and facilitate international road traffic.
They include the following:
1968 Convention on Road Traffic, and its predecessor,
the 1949 Convention on Road Traffic, which facilitate
international road traffic and increase road safety
through the adoption of uniform road traffic rules.
1968 Convention on Road Signs and Signals, which
establishes a set of commonly agreed road signs and
signals.
1958 Agreement concerning the Adoption of
Harmonized Technical United Nations Regulations
forWheeled Vehicles, Equipment and Parts which can
be Fitted and/or be Used on Wheeled Vehicles and the
Conditions for Reciprocal Recognition of Approvals
Granted on the Basis of these United Nations
Regulations, which provides the legal framework for
adopting uniform United Nations Regulations for all
types of wheeled vehicles manufactured, specifically
related to safety and environmental aspects.
1997 Agreement concerning the Adoption of Uniform
Conditions for Periodical Technical Inspections of
Wheeled Vehicles and the Reciprocal Recognition of
Such Inspections which provide the legal framework
for the inspection of wheeled vehicles and for the
mutual recognition of inspection certificates for
cross-border use of road vehicles.
1998 Agreement concerning the Establishing of
Global Technical Regulations for Wheeled Vehicles,
Equipment and Parts which can be fitted and/
or be used on Wheeled Vehicles, which serves as
the framework for developing global technical
regulations for vehicles on safety and environmental
performance.
1957Agreement concerningthe International Carriage
of Dangerous Goods by Road (ADR) which provide
standards including requirements for operations,
driver training and vehicle construction, that can be
applied to prevent and mitigate the impact of crashes
involving dangerous goods.
To fully realize their benefits, implementation of UN road
safety conventions must go beyond accession. The vital
next step is for the conventions to be transposed into
national or regional legislation and systems to ensure
their effective application, and thereafter be enforced
through traffic police and inspection bodies.
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20. Speed management
Managing speed is critical to the effective
implementation of the Safe System approach. It is a
cross-cutting risk factor and is addressed through
actions relating to different elements of the Safe
System, such as multimodal transport and land use
planning, infrastructure, vehicle design and road user
behaviour. Appropriate speed management not only
directly impacts crash likelihood and severity, it also
affects the effectiveness of other safety interventions.
For example, vehicles that meet UN vehicle regulations
or equivalent national standards are designed to limit
crash forces on occupants and pedestrians to survivable
levels in side impacts up to collision speeds of 50 km/h.
Therefore, a Safe System would limit speeds to 50 km/h
or lower on roads with intersections where side impacts
can be expected.
In densely populated urban areas, there is strong
evidence that even the best road and vehicle design
features are unable to adequately guarantee the safety
of all road users when speeds are above the known safe
level of 30 km/h. For this reason, in urban areas where
there is a typical, predictable mix of road users (cars,
cyclists, motorcyclists, and pedestrians), a maximum
speed limit of 30 km/h (20 mph) should be established,
unless strong evidence exists to support higher limits.
Speed management interventions are possible across
a range of road safety arenas, including road design
and engineering (for example, employing speed humps
or cushions, raised platform crossings, roundabouts,
chicanes, as well as safe speed limits); vehicle
interventions (speed limiting, Intelligent SpeedAssistance
or ISA); and behaviour change (legislation, enforcement
and promotion to deliver effective general deterrence
of speeding). The effective integration of these often-
fragmented efforts (and in the contexts in which they
will be most effective) will improve speed management
and deliver more powerful, fully effective outcomes. For
example, road engineering measures are more suitable
for lower, rather than higher speed contexts; vehicle
interventions can take time to become cost-effective,
especially in countries that import mainly used vehicles;
and enforcement, including automated enforcement,
is most effective in countries with little corruption, and
effective judicial and administrative systems.
20
21. Capacity development
Capacity-building for road safety professionals working
for the government, the private sector, civil society and
research institutions should be given top priority, as the
lack of specialist knowledge of creating safer roads,
vehicles and road user behaviour, and for designing and
operating a well-functioning post-crash systems is a
major barrier in many countries. Further, many countries
and cities lack expertise in adapting Safe System
principles to local conditions, in effectively collecting
and analysing road safety data, and in carrying out
quality road safety research.
Over the past decades, road safety has, to some extent,
been integrated into academic curricula in multiple
disciplines such as public health, transport, and
urban planning. The accreditation of road safety as
a field of study within institutions of higher learning
and professional development would be an important
element in ensuring the development of well-rounded
road safety managers and practitioners. Short-term
courses and continuing education activities can
also help provide competencies such as programme
management and implementation while professional
networks and communities ofpractice are also important
platforms to provide continued support and knowledge
enhancement. In addition, training for professionals
in allied fields (such as journalism) can be an effective
means of strengthening advocacy and policy support
for road safety efforts.
Ensuring a gender perspective in transport planning
The issues of road safety apply differently to men and
women for a variety of physical, behavioural and social
reasons. Despite the higher vulnerability of women
during a crash they are far less likely to die in one
than men. When they are killed it is usually in different
circumstances – as pedestrians and car passengers
rather than car drivers and motorcycle riders. This in
part reflects the greater number of motorised journeys
taken by men. It also reflects gender differences in
taking risks. Evidence suggests that male drivers/
riders are associated with 2 to 4 times higher risk per
km than females, even when taking into account that
men overwhelmingly used the most dangerous modes,
including in transport and related occupations.
There are also large gender differences in road injury
patterns. Women have 47% higher risk of serious injury
in a car crash than men and are at a five times higher
risk of whiplash injury. The intrinsic gender differences
in the skeleton may be one of the possible reasons for
higher injury incidence in females. However, most of
regulatory tests assessing vehicle occupant safety only
use models of the average male, and so do not reflect
the specific physical features and needs of women.
As such, the following should be considered as part of
the implementation of the Safe System:
Transport policyframeworks must provide an enabling
environment for both men and women to share safe,
secure, accessible, reliable and sustainable mobility,
and non-discriminatory participation in transport.
More women must be involved in the transport sector
and its processes – as operators in transport systems,
as decision-makers in the development of regulatory
and policy systems, as engineers and designers, and
everywhere in between.
A greater focus is needed on gender differences in
relation to the design and construction of all aspects
of transport infrastructure. For example, vehicle
design needs to be modified to accommodate the
differences in ergonomics between genders – EvaRID
dummy is a good example of how this might be
achieved when it has been successfully validated for
regulatory testing.
21
22. Adapting technologies to the Safe System
Automotivetechnologyis changing at an unprecedented
rate and while there is debate about the potential of
emerging technologies, advanced driver assistance
systems, including electronic stability control, lane-
change warnings and automatic emergency braking
are already saving lives in many countries. Future
automated vehicle functionalities are also being
developed which will potentially save even more lives.
Technologies outside the vehicle could also make a
difference in low- and middle-income countries. One
example is post-crash care, where communications
technology – perhaps built upon the near-ubiquitous
mobile phone – could facilitate effective bystander care
for the injured. Where ambulances are not available,
technology could provide route guidance for delivering
crash victims to the nearest medical facility capable of
trauma care.
Vehicle-to-vehicle and vehicle-to-infrastructure
communications can also contribute to safer and more
sustainable mobility. This capability could be particularly
beneficial for the safety of pedestrians, cyclists and
powered two-wheelers. Similar technology can also
permit route planning to reduce congestion, reduce
emissions and optimize safety. Communications and
logistics technologies can reduce the need for travel
by connecting people electronically for business and
commerce as well as facilitating efficient and safe
shipping of products and materials.
Stimulating the development of safety technology that
would be appropriate in a wide range of settings is
one part of the leadership challenge. The other part
relates to managing the technological revolution and
its potential impact – both positive and negative – on
road safety. Increasing connectivity and other mobile
technologies create new opportunities as well as
challenges that require assessment and updating of
policies, regulations, and traffic laws.
22
23. Focus on low- and middle-income countries
Low- and middle-income countries account for more
than 90% of all road traffic deaths despite having less
than 60% of the world’s motor vehicles, so achieving
the Decade of Action target will require increased
attention and support to these countries. Despite
obvious challenges, low- and middle-income countries
can leapfrog traditional, standalone interventions to
address road safety and adopt an integrated approach
to safe and sustainable transport. As many high-
income countries (particularly those that depend
heavily on private vehicle use) face challenges – such
as decarbonizing transport to mitigate climate change,
and addressing health concerns resulting from physical
inactivity – low- and middle-income countries can
invest now in multimodal transport systems as part of
an integrated development agenda.
In addition to sharing lessons learned and technical
support, high-income countries (through their
bilateral development agencies) along with multilateral
and private donors should ensure provisions, and
adherence to these provisions, for road safety as part
of all development support. Similarly, multinational
corporations operating in low- and middle-income
countries should monitor the safety of their operations
and put in place mechanisms to prevent road
trauma throughout their value chain. Commitment
and adherence to road safety principles by private
corporations should be the same in low- and middle-
income countries as it is in high-income countries,
regardless of the regulatory environment in which
they operate.
The diversity of contexts and geopolitical situations
among low- and middle-income countries reinforces
the importance of regional and national collaboration –
including opportunitiesto establish regionaltargets and/
or strategies to address common challenges. In these
situations, collaboration can also offer an opportunity
to amplify the voice of individual countries. Through
the establishment of regional networks and alliances,
countries can increase their leverage during interactions
with multilateral and multinational organizations.
23
24. Though governmental agencies have the primary
responsibility to design a safe road transport system
and implement a road safety action plan, the role and
influence of other actors are increasingly recognized as
an important part ofthe Safe System. The private sector,
civil society, academia, and other non-state actors can
Shared responsibility for
road safety
Role of government
PART IV
Government (national and local) bears the main
responsibility to ensure citizens’ safety. Given the
significant negative impact of road crashes and large
positive payoffs of greater safety, road safety must be
treated as a political priority and acknowledged as a
valuable public good. A very important indication of the
political will to do this is the level of financing, across
sectors, allocated to road safety-related objectives at
national level. Additionally, governments are responsible
for establishing priorities as part of a national plan
based on stakeholder consultation and local evidence;
mechanismsforcoordination; and ensuringthe collection
and analysis of data on crashes, deaths, and injuries.
The central role of government in leading and
coordinating a country’s road safety strategy needs
to be sustained even where sharing responsibility with
other actors through the following actions:
Providing a legislative framework for road safety
and legal mandate for the work of different agencies
within and outside government.
also contribute in important ways. The collective, global
power of public and private organizations adopting road
safety practices as part of their contributions to the
SDGs, together with their endorsement, leadership and
purchasing power, is substantial.
24
25. Developing a plan of action with targets and
monitoring the road safety activity of different
actors and ensuring adequate funding to support its
implementation.
Encouraging compliance with standards such as
procurement practices by transport providers and
users.
Providing overall coordination for these activities.
Public reporting by all actors is critical to ensuring
transparency and accountability. State actors have
an obligation to make public and encourage/mandate
others to do the same with their own policies and
performance indicators, including the number of road
traffic deaths, injuries and other relevant data.
Role of academia, civil society and youth
Globally,there is considerable expertise among academic
institutions and civil society groups that can help fill
important gaps in different (sometimes neglected) areas
of road safety, as well as help implement the policy
measures necessary to reduce road trauma. Academic
and research institutions play an important role in
generating evidence to help government and other
actors understand (through epidemiological and risk
analyses) the nature ofthe problem as well as to identify
effective solutions and strategies (through intervention
trials and implementation studies). Civil society can help
amplify the voice of academia by being an advocate
and acting as an independent voice to influence social
change. It can also support the development of policies
by augmenting the evidence base as well as bringing
the perspectives of communities impacted by those
policies to the table.
In addition to keeping road safety on the government
agenda and uniting stakeholders with a common goal,
academia and civil society groups can:
be an important source of road safety information for
the community and governments;
help ensure government accountability by
empowering communities on road safety issues and
ensuring good governance; and
help push for the achievement of the road safety-
related SDGs.
Young people play an important role in shaping the
future transport system for two key reasons. First, they
are the age group most affected by road trauma, with
road traffic crashes being the leading cause of death
among those aged 5–29 years. Second, they are the
generation that will inherit the outcomes of decisions
made today about the safety of the evolving transport
system. As such they should be asked about their needs,
and to help shape the system and generate ideas on how
to better protect some of the most vulnerable among
us. Meaningful engagement with young leaders can help
foster greater ownership of the road safety issue as well
as develop a new cohort of road safety advocates with
a fresh perspective on the future of mobility.
25
26. Role of the private sector
Corporations and businesses have tremendous
influence on societyandtransport systemsthroughtheir
products; their fleets and how they manage them; their
influence on employees, contractors, as well as their
potential to financially support road safety. Businesses
and industries of all sizes and sectors can contribute to
attaining the road safety-related SDGs by applying Safe
System principles to their entire value chains (including
internal practices throughout their procurement,
production and distribution processes) and reporting
on safety performance in their sustainability reports.
For example, businesses could place contingencies in
their contracts with suppliers that:
specify vehicle safety levels (including for powered
two-wheelers) for vehicle fleets that are used in
carrying out procured services;
require that transport drivers, including those using
powered two-wheelers and other motorized personal
mobility devices, have undergone user training;
expect suppliers to perform road safety performance
self-monitoring and reporting; and
set standards for scheduling and planning procured
driving operations and practices to manage driver
fatigue, use of low-risk roads, use of lower risk
vehicles, and improved times for travel.
Vehicle manufacturers and allied industries can
contribute by ensuring that the vehicles that they
produce include safety features regardless of the
markets in which they are sold. They can advocate for
safe infrastructure that is adapted for all road users, the
development of safety technologies, and by supporting
efforts to harmonize standards and requirements across
regions.
Similarly, other sectors such as insurance can contribute
to a culture of safety by creating incentives for safe road
use through the premium pricing. Mandatory insurance
schemes can contribute significantly to the post-crash
response by facilitating crash investigations as well as
offering protection from financial losses for victims.
Other efforts to create a safety “commodity”, such as the
development of a safety index and the establishment of
road safety bonds, are also important means of ensuring
sustainable practices by corporations.
Additionally, corporations and private businesses must
also address and mitigate actions that negatively impact
road safety, including the promotion of cars based on
the speed they can achieve; the promotion of high
consumption of alcohol or other products that can
contribute to impaired driving; and employment policies
that can contribute to overcrowded public transport or
driver fatigue.
26
27. Role of funders
Funders, both public and private, play an important role
in ensuring that appropriate resources are available
to support the actions described in this plan. Private
donors play an important role in filling short-term
gaps in investments and can provide resources such
as seed funding to carry out immediate road safety
improvements while stimulating country-wide and
longer-term investments by government. Support
from private funders also helps to fill critical gaps in
capacity development, research, and advocacy in many
countries. Ensuring the alignment of priorities between
external funders and governments, as well as a pathway
for sustainable financing for road safety, is critical to
the success of these endeavours. External funders,
including international organizations, bilateral and
multilateral development agencies and development
banks, can also contribute to road safety efforts by
ensuring the integration of road safety in development
activities, especially for infrastructure development
initiatives that impact transport and mobility. These
funders also have an obligation to ensure that provisions
for road safety are guaranteed as part of all development
support provided.
Role of the United Nations
The World Health Organization acts, in close
cooperation with the UN Regional Commissions, as
the coordinating agency for road safety within the UN
system to support Member States by raising awareness;
establishing targets; providing policy guidance; data
collection; technical capacity building; and convening
stakeholders. The UN Secretary-General’s Special Envoy
for Road Safety will continue to raise awareness on the
importance of prioritizing road safety through national
plans and budgets, as well as promoting its links with
other SDGs. The UN Road Safety Collaboration will
continue to act as a consultative mechanism to facilitate
international cooperation and strengthen global and
regional coordination among UN agencies and other
international partners to support implementation of UN
General Assembly Resolutions on road safety.
The UN Road Safety Fund will continue to strengthen
governments’ capacity to effectively implement lasting
road safety improvements by leveraging public and
private investments towards high-impact initiatives
in countries. The UN Resident Coordinators will also
continue to coordinate actions planned and undertaken
by UN Country Teams and host governments in relation
to this plan. Specialized agencies such as UN Habitat,
the United Nations Environment Programme, UNICEF,
the International Telecommunication Union, UNESCO,
as well as the UN Special Envoy for Youth, will continue
working to ensure that safe and sustainable mobility are
reflected in other development priorities and agendas,
reiterating the cross-cutting implications of road safety.
27
28. Monitoring and evaluation
Measuring progress towards the global target
PART V
Atthe global level,theWHO’s Global status report on road
safety is the main mechanism for monitoring progress
of the Decade of Action for Road Safety. Information for
this report is collected through a survey administered
to Member States in which they provide details on
the number of traffic deaths and injuries; status of
traffic laws and their enforcement; as well as other
indications of progress towards the implementation of
this plan, such as accession to road safety-related UN
conventions.
A 50% reduction in the number of road traffic deaths and
serious injuries is called for by 2030. A change in the
absolute number of people killed and seriously injured in
road traffic crashes will be the starting point for analysis
– based on current estimates, the targeted reduction
will be in the order of 650 000 globally. These data will
be analysed to show the number of road traffic deaths
and injuries per 100 000 population. A baseline for
both absolute and relative indicators will be computed
for 2021. Mid-term (2025) and end-term (2030)
evaluation will be conducted to determine changes in
these indicators compared to the baseline. In addition
to the main indicators, other outcome and process
indicators will be described to enable a qualitative
assessment. Although UNGA RES 74/299 also calls
for a change in the number of people seriously injured
in road traffic collisions to be shown, currently there
is no comprehensive database with this information.
Definition and measurement of serious injuries is
problematic in many countries. The strengthening
of data collection systems for road safety should be
prioritized by governments and other actors.
28
29. Monitoring in-country implementation
At the country level, the implementation of national
and local action plans should be carried out iteratively
and be informed by data and evidence. Countries and
all stakeholders are therefore expected to assess the
performance of their programmes routinely and use
these findings to inform and improve planning and
implementation. The global voluntary performance
targets and indicators adopted in 2017 and 2018 provide
a useful framework to assess progress towards the
implementation of this plan.
The collection of quality data is a key prerequisite
for implementation. Creating trauma registries,
harmonizing definitions, and establishing links between
different sectors (police, health, transport) facilitate the
gathering of data where resources are limited as well as
ensure the validity of data collected. Opportunities for
learning should be embedded within routine practices
such as infrastructure inspections and audits, periodic
technical vehicle inspections, and routine management
reviews. These existing processes, along with research,
can generate valuable data and feedback that can
inform critical decisions about implementation, and as
needed, modifications to action plans over the course
of the next decade.
29
30. The way forward
As we embark upon the Second Decade of Action
for Road Safety, we urge governments and everyone
concerned with road safety to use this plan to guide the
ongoing development, implementation and evaluation
of road safety action at global, regional, national and
subnational levels, adapted and tailored to specific
contexts. National plans should be based on a situational
assessment and inputs from all government agencies
and other stakeholders. They should set out the overall
vision for road safety and the specific problems to
be addressed in reaching it. To this end, plans should
identify short-, medium- and long-term priorities for
action, recognizing that not everything can be done
at once.
As we pursue this path, it is critical that governments
redouble their efforts to ensure political commitment
and responsibility for acting on road safety at the
highest level, along with contributions from different
government agencies, multisectoral partnerships,
corporations and international organizations. These
strategies and efforts must be transparent and public.
Safety must be the core value of these efforts and
be reflected in the way policies are designed and
implemented, and the way the system is governed.
Seeing safety as the core value of road transport
ensures that safety is embedded along the entire value
chain of the transport system, from the design and
production of vehicles and road infrastructure to the
delivery of transport services and transport policy itself.
This Global Plan calls on governments and stakeholders
to take a new path—one that emphasizes safety as
a core value within the Safe System and sustainable
mobility. We already know what to do, have the tools to
do it, and we all have a part to play. So let’s do it.
So let’s do it.
PART VI
30
31. ANNEX I
Key information resources
The list of resources provided in this Annex includes primarily resources emanating from UN bodies and other
International Governmental Organizations as well as resources endorsed and/or noted by the UN General Assembly
in its resolutions.
United Nations General Assembly Resolution 74/299 Improving Global Road Safety ( )
Transforming our world: the 2030 agenda for sustainable development. New York, United Nations Organization,
2015 ( )
Stockholm Declaration ( )
Recommendations of the Academic Expert Group (setup at the occasion of the third high level conference on
road safety to develop recommendations for the way forward) ( )
Global Plan for the Decade of Action for Road Safety 2011–2020 ( )
UN road safety related legal instruments
• 1968 Convention on Road Traffic ( )
• 1949 Convention on Road Traffic ( )
• 1968 Convention on Road Signs and Signals ( )
• 1958 Agreement concerning the Adoption of Harmonized Technical United Nations Regulations for Wheeled
Vehicles, Equipment and Parts which can be Fitted and/or be Used on Wheeled Vehicles and the Conditions for
Reciprocal Recognition of Approvals Granted on the Basis of these United Nations Regulations ( ) ( )
• 1997 Agreement concerning the Adoption of Uniform Conditions for Periodical Technical Inspections of Wheeled
Vehicles and the Reciprocal Recognition of Such Inspections ( ) ( )
• 1998 Agreement concerning the Establishing of Global Technical Regulations for Wheeled Vehicles, Equipment
and Parts which can be fitted and/or be used on Wheeled Vehicles ( ) ( )
• 1957 Agreement concerning the International Carriage of Dangerous Goods by Road (ADR) ( )
Inland Transport Committee Recommendations for Enhancing National Road Safety Systems ( )
Zero road deaths and serious injuries: leading a paradigm shift to a safe system. Paris, Organisation for Economic
Co-operation and Development, 2016 ( )
Save LIVES - A road safety technical package. Geneva: World Health Organization; 2017 ( )
World report on road traffic injury prevention. Geneva: World Health Organization; 2004 ( )
Global status report on road safety 2018. Geneva: World Health Organization; 2018 ( )
Global road safety performance targets ( )
Glossary for transport statistics (fifth edition). Geneva: United Nations Economic Commission for Europe; 2019 ( )
Data systems: a road safety manual for decision-makers and practitioners. Geneva, World Health Organization,
2010 ( )
Cyclist safety: an information resource for decision-makers and practitioners. Geneva: World Health Organization;
2020 ( )
31
32. Powered two- and three-wheeler safety: a road safety manual for decision-makers and practitioners. Geneva:
World Health Organization; 2017 ( )
Pedestrian safety: a road safety manual for decision-makers and practitioners. WHO 2013 ( )
Strengthening road safety legislation: a practice and resource manual for countries. World Health Organization
(2013) ( )
Speed management: a road safety manual for decision-makers and practitioners, World Bank, World Health
Organization Global Road Safety Partnership. (2008) ( )
Helmets: a road safety manual for decision-makers and practitioners. World Health Organization. (2006) ( )
Drinking and driving: a road safety manual for decision-makers and practitioners, Geneva, Global Road Safety
Partnership, 2007 ( )
Seat-belts and child restraints: a road safety manual for decision-makers and practitioners London, FIA
Foundation for the Automobile and Society, 2009 ( )
32
33. ANNEX II
Voluntary performance targets for road safety risk factors and
service delivery mechanisms
Voluntary performance targets for road safety risk factors and service delivery mechanisms were adopted by Member
States on 21 November 2017 as a way to guide countries’ efforts and accelerate progress towards safer roads.
The process leading to the elaboration of these targets was facilitated by WHO, with the full participation of Member
States and in collaboration with organizations in the United Nations system (including the United Nations regional
commissions), through the existing mechanisms (including the United Nations Road Safety Collaboration) as requested
by the General Assembly (A/Res/70/260) ( ) and the World Health Assembly (WHA 69.7) ( ).
2020
1
Target 1: By 2020, all countries
establish a comprehensive
multisectoral national road
safety action plan with time-
bound targets.
Target 2: By 2030, all countries
accede to one or more of the
core road safety-related UN
legal instruments.
2020
2
Target 3: By 2030, all new roads
achieve technical standards
for all road users that take into
account road safety, or meet a
three star rating or better.
2020
3
Target 4: By 2030, more than
75% of travel on existing roads
is on roads that meet technical
standards for all road users that
take into account road safety.
2020
4
Target 5: By 2030, 100% of
new (defined as produced,
sold or imported) and used
vehicles meet high quality
safety standards, such as
the recommended priority
UN Regulations, Global
Technical Regulations, or
equivalent recognized national
performance requirements.
2030
5
Target 6: By 2030, halve the
proportion of vehicles travelling
over the posted speed limit and
achieve a reduction in speed-
related injuries and fatalities.
2030
6
Target 7: By 2030, increase
the proportion of motorcycle
riders correctly using standard
helmets to close to 100%.
2030
7
Target 8: By 2030, increase the
proportion of motor vehicle
occupants using safety belts or
standard child restraint systems
to close to 100%.
2030
8
Target 9: By 2030, halve the
number of road traffic injuries
and fatalities related to drivers
using alcohol, and/or achieve
a reduction in those related to
other psychoactive substances.
2030
9
Target 10: By 2030, all countries
have national laws to restrict
or prohibit the use of mobile
phones while driving.
2030
10
Target 11: By 2030, all countries
to enact regulation for driving
time and rest periods for
professional drivers, and/
or accede to international/
regional regulation in this area.
2030
11
Target 12: By 2030, all countries
establish and achieve national
targets in order to minimize
the time interval between road
traffic crash and the provision
of first professional emergency
care.
2030
12
33
34. ANNEX III
Inland transport committee recommendations for enhancing
national road safety systems
The Inland Transport Committee (ITC) of the United Nations Economic Commission for Europe provided countries
with the ITC Recommendations for Enhancing National Road Safety Systems (“ITC Recommendations”), adopted at
its eighty-second session (ECE/TRANS/2020/9). These recommendations give a comprehensive picture of national
road safety systems that includes all key elements at the national level with international support. They interconnect
the five pillars of the global plan for the Decade of Action 2011–2020 (management, safe user, safe vehicle, safe road
and effective post-crash response) and further elaborate with key action areas (legislation, enforcement, education,
technology). Possible actions, ideal responsible authority, national coordination, international support and application
of relevant UN road safety related legal instruments for each pillar are specified in the Recommendations.
Road safety management – vertical and horizontal coordination
Traffic rules drivers
cyclists pedestrians
Lawful behaviour
ensured by police
and inspectors
Awareness raising,
training and
examination
Supportive
technology and
equipment, rules
reminders
UN RS legal
instruments and
resolutions,WP.1,
SC.1,WP.15
Safe user
Safe road
Effective
post-crash
response
Safe vehicle
Rules and
standards for
admission of
vehicles to traffic
Certification
and inspections
by qualified
inspectors
Awareness raising
for users, training
for inspectors
Supportive
technology and
equipment,
compliance
reminders
UN RS legal
instruments and
resolutions,WP.1,
SC.1,WP.29
Standards
for design,
construction,
maintenance and
signage
Audit, assessment
and inspection by
qualified teams
Awareness raising
for road managers,
and for inspectors
Forgiving and self-
explaining road
design, intelligent
road systems
UN RS legal
instruments and
resolutions, int.
standardsWP.1,
SC.1
Standards for data
collection post-
crash response and
investigation
Oversight of
rescue services,
investigators
investigating
crashes
First aid and rescue
service training,
investigators
training
Supportive
technology and
equipment
Consolidated
resolution, int.
standardsWP.1,
SC.1
Area
Pillar
Legislation Enforcement Education Technology
International
regulatory
support
34