IJMRR is an international forum for research that advances the theory and practice of management. All papers submitted to IJMRR are subject to a double-blind peer review process. Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, and public sector management.
Smartphone Controlled Robotic Vehicle with Unique Bearing Alignment Mechanism...ijtsrd
Robotics technology is rapidly developing in engineering because it can automate complex activities with higher accuracy and speed. Previously, only trained humans in a bomb suit could do duties that automated and autonomous equipment can now perform. In many situations, human attention is not required, such as discovering and spreading explosives, monitoring a site, or identifying land mines.For safety reasons, the robotic vehicle in this project will use a 6 degree robotic arm to pick and place a dangerous object. The robot vehicle is remote operated using an Android application via Bluetooth. The Bluetooth device connects to the microcontroller to run DC motors through a motor driver IC. Any Android smartphone tablet etc. can execute remote control through touch screen GUI Graphical User Interface . In this case, Arduino controls the whole setup, increasing circuit complexity and speed. The robotic system consists of a manipulator, an end effector, a moving base, and a camera for visual inputs. These power the robotic arms joints, linkages, and end effectors. The Rocker Bogie method allows the robot to travel more readily on any terrain. Whiley Samuel Effiom | Akwukwaegbu, Isdore Onyema | Nsan-Awaji Peterson Ene-Nte "Smartphone Controlled Robotic Vehicle with Unique Bearing-Alignment Mechanism and Robotic Arm for Dangerous Object Disposal" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-2 , February 2022, URL: https://www.ijtsrd.com/papers/ijtsrd49298.pdf Paper URL: https://www.ijtsrd.com/engineering/electrical-engineering/49298/smartphone-controlled-robotic-vehicle-with-unique-bearingalignment-mechanism-and-robotic-arm-for-dangerous-object-disposal/whiley-samuel-effiom
Smartphone Controlled Robotic Vehicle with Unique Bearing Alignment Mechanism...ijtsrd
Robotics technology is rapidly developing in engineering because it can automate complex activities with higher accuracy and speed. Previously, only trained humans in a bomb suit could do duties that automated and autonomous equipment can now perform. In many situations, human attention is not required, such as discovering and spreading explosives, monitoring a site, or identifying land mines.For safety reasons, the robotic vehicle in this project will use a 6 degree robotic arm to pick and place a dangerous object. The robot vehicle is remote operated using an Android application via Bluetooth. The Bluetooth device connects to the microcontroller to run DC motors through a motor driver IC. Any Android smartphone tablet etc. can execute remote control through touch screen GUI Graphical User Interface . In this case, Arduino controls the whole setup, increasing circuit complexity and speed. The robotic system consists of a manipulator, an end effector, a moving base, and a camera for visual inputs. These power the robotic arms joints, linkages, and end effectors. The Rocker Bogie method allows the robot to travel more readily on any terrain. Whiley Samuel Effiom | Akwukwaegbu, Isdore Onyema | Nsan-Awaji Peterson Ene-Nte "Smartphone Controlled Robotic Vehicle with Unique Bearing-Alignment Mechanism and Robotic Arm for Dangerous Object Disposal" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-2 , February 2022, URL: https://www.ijtsrd.com/papers/ijtsrd49298.pdf Paper URL: https://www.ijtsrd.com/engineering/electrical-engineering/49298/smartphone-controlled-robotic-vehicle-with-unique-bearingalignment-mechanism-and-robotic-arm-for-dangerous-object-disposal/whiley-samuel-effiom
Multi-Purpose Robot using Raspberry Pi & Controlled by SmartphoneIJERA Editor
This paper proposes a method for controlling a Wireless robot for multi-purpose in the sense surveillance, rescue operations and weather reporting, human detection, geo-graphical location etc., Generally surveillance robots consists a high cost microcontroller, Bluetooth module or Wi-Fi modules, audio systems and a costly and complicated communication system. Raspberry pi b model is a credit card size single board computer. It is built with the Wi-Fi, Bluetooth modules and USB ports and in built Broadcom BCM2837 processor that gives very speed processing and audio, video jacks and camera interfacing port, HDMI port and Ethernet ports is available. This board will meet our requirements. The Robot is equipped with various critical sensors, detectors and Camera. The live video feedback is obtained from the camera. Data from the sensors is send to the Smartphone at user end. Latest Raspberry pi board is used on robot to interface with sensors and camera. It is having an in built Wi-Fi. An Android Smartphone sends a wireless command through robot controlled app which is received by Raspberry pi board and accordingly robot moves
Real Time Hand Gesture Recognition Based Control of Arduino Robotijtsrd
The main objective of this project aims at delivering the need for one of many applications of the Internet of Things domain. It is a combination of various domains such as image processing and robotics for development in the field of the Internet Of Things IoT now also termed as Internet Of Everything IoE after seeing its involvement in almost everything happening in our day to day lives. With increased dependency on home automation and wireless controlled equipment and gadgets, this project also shares some scope in home automation. To improve the functionality of gadgets and to increase their efficiency we thought of creating a device to cater to these needs and explore alongside our own interest in the field of the Internet of Things. This paper presents the design, functioning, and successful testing of a rover controlled wirelessly with help of hand gestures. Gesture Recognition has played important role in the field of Human Computer Interaction HCI . Vision based hand gesture recognition provides a great solution to various machine vision based applications by providing an easy interaction channel. For various automated machine control applications, an effective real time communication approach is required. In this paper, a vision based hand gesture based approach is presented for providing a real time control of Arduino based robot. Combining all of these concepts into a single device that can recognize hand gestures and sends data wirelessly to remote devices for surveillance and other purposes. Dr. Sunil Chavan | Prof. Revti Jadhav | Jayesh Mankar | Suyash Thakur | Shahid Ansari | Vatsal Panchal "Real-Time Hand Gesture Recognition Based Control of Arduino Robot" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-4 , June 2022, URL: https://www.ijtsrd.com/papers/ijtsrd49934.pdf Paper URL: https://www.ijtsrd.com/engineering/electronics-and-communication-engineering/49934/realtime-hand-gesture-recognition-based-control-of-arduino-robot/dr-sunil-chavan
IOT Cloud Based Real Time Automobile Monitoring SystemDr. Amarjeet Singh
Smart sensing has had a significant impact on defining our future in recent years. The field of IOT is a recent technical innovation that has caused a change in lifestyle (Internet of things). IoT refers to the internetworking of physical equipment and other items that are equipped with electronics, software, sensors, and network connectivity to allow data to be collected from them. Transportation is a booming industry in India, with the number of vehicles on the road increasing by the day. Monitoring vehicle metrics such as gasoline, temperature, and battery level without having to touch the car is perfect. In this digital age, a digital locking mechanism is desperately needed. When your vehicle is not with you, vehicle tracking is also essential. Here, car tracking is designed using GPS to conveniently locate the user's vehicle. The IoT cloud-based real-time automotive monitoring system is capable of monitoring our vehicle's metrics such as fuel level, battery level, engine temperature, and speed, as well as tracking the driver's alcohol percentage via an Android application. We receive an alert when one of these metrics crosses a certain threshold. Its Smart RFID digital key secures your vehicle even more than keys do. We may save our vehicle documents, driver's licences, insurance copies, and other documents in this project's Android application. Whenever an accident occurs, send a message to trusted people with the location.
Monitoring behavior, numerous actions, or any such information is considered
as surveillance and is done for information gathering, influencing, managing,
or directing purposes. Citizens employ surveillance to safeguard their
communities. Governments do this for the purposes of intelligence collection,
including espionage, crime prevention, the defense of a method, a person, a
group, or an item; or the investigation of criminal activity. Using an internet
of things (IoT) rover, the area will be secured with better secrecy and
efficiency instead of humans, will provide an additional safety step. In this
paper, there is a discussion about an IoT rover for remote surveillance based
around a Raspberry Pi microprocessor which will be able to monitor a
closed/open space. This rover will allow safer survey operations and would
help to reduce the risks involved with it.
Smart phone based robotic control for surveillance applicationseSAT Journals
Abstract The robotics and automation industry which is ruled the sectors from manufacturing to household entertainments. It is widely used because of its simplicity and ability to modify to meet changes of needs. The project is designed to develop a robotic vehicle using android application for remote operation attached with wireless camera for monitoring purpose. The robot along with camera can wirelessly transmit real time video with night vision capabilities. This is kind of robot can be helpful for spying purpose in war fields. Keywords: Android, Robot, Bluetooth, Robotic control
Smart phone based robotic control for surveillance applicationseSAT Publishing House
IJRET : International Journal of Research in Engineering and Technology is an international peer reviewed, online journal published by eSAT Publishing House for the enhancement of research in various disciplines of Engineering and Technology. The aim and scope of the journal is to provide an academic medium and an important reference for the advancement and dissemination of research results that support high-level learning, teaching and research in the fields of Engineering and Technology. We bring together Scientists, Academician, Field Engineers, Scholars and Students of related fields of Engineering and Technology
Sensor Based Motion Control of Mobile Car Robotijtsrd
A robot is a computer , mobile , or digital programmed virtual synthetic agent or electromechanical system that can perform tasks on its own. These frameworks stand out because of their ability to be controlled. As a result of this, a group of independent PCs appears to clients as a single controlling framework. Artificial Intelligence AI is required to construct technologies that can interact with the physical world in Robotics and Vision. AI systems such as robots can only communicate with the real world if they do their tasks accurately. The Robots efficiency is highly dependent on the applications vision techniques. As a result, the development of self driving and self contained robots relies heavily on visual techniques and procedures. A combination of temperature, gas, and fire sensors, as well as a buzzer, is used to detect areas that are more prone to explosions. In addition, a live video feed is available to keep tabs on the cars every move. Sensor based remote control of mobile robots in an unknown environment with obstacles is the focus of this paper. Prakash. P. | Mohamed Abdul Naseer R | Shajil Ameer V. V. "Sensor Based Motion Control of Mobile Car Robot" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-3 , April 2022, URL: https://www.ijtsrd.com/papers/ijtsrd49688.pdf Paper URL: https://www.ijtsrd.com/engineering/electronics-and-communication-engineering/49688/sensor-based-motion-control-of-mobile-car-robot/prakash-p
These robot used in military are usually employed with the integrated system, including video screens, sensors, gripper and cameras. Android application controlled WARFARE ROBOT, built in with Robotic arm mechanism to pick up or place small objects like explosives , an on board Wireless video camera, Infrared based surface depth and irregularities perception and android application for movement and other controls of the Robot. The robot will serve as an appropriate gadget for the defence sector to reduce the loss of human life. Sushmita Shivalkar | Geeta Yadav | Swapnali Patil | Sakshi Dale ""Warfare Robot"" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-3 | Issue-3 , April 2019, URL: https://www.ijtsrd.com/papers/ijtsrd22888.pdf
Paper URL: https://www.ijtsrd.com/engineering/electronics-and-communication-engineering/22888/warfare-robot/sushmita-shivalkar
ijerst offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process. International Journal of Engineering Research and Science & Technology (IJERST) is an international online journal in English published Quarterly. All submitted research articles are subjected to immediate rapid screening by the editors, in consultation with the Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal.
Alinteri Journal of Agriculture Sciences The journal is an open access, international, double-blind peer-reviewed journal publishing research articles, Invited reviews, short communications, and letters to the Editor in the field of agriculture, fisheries, veterinary, biology, and closely related disciplines. We adopt the policy of providing open access to readers who may be interested in recent developments. Is being published online biannually as of 2007.
Multi-Purpose Robot using Raspberry Pi & Controlled by SmartphoneIJERA Editor
This paper proposes a method for controlling a Wireless robot for multi-purpose in the sense surveillance, rescue operations and weather reporting, human detection, geo-graphical location etc., Generally surveillance robots consists a high cost microcontroller, Bluetooth module or Wi-Fi modules, audio systems and a costly and complicated communication system. Raspberry pi b model is a credit card size single board computer. It is built with the Wi-Fi, Bluetooth modules and USB ports and in built Broadcom BCM2837 processor that gives very speed processing and audio, video jacks and camera interfacing port, HDMI port and Ethernet ports is available. This board will meet our requirements. The Robot is equipped with various critical sensors, detectors and Camera. The live video feedback is obtained from the camera. Data from the sensors is send to the Smartphone at user end. Latest Raspberry pi board is used on robot to interface with sensors and camera. It is having an in built Wi-Fi. An Android Smartphone sends a wireless command through robot controlled app which is received by Raspberry pi board and accordingly robot moves
Real Time Hand Gesture Recognition Based Control of Arduino Robotijtsrd
The main objective of this project aims at delivering the need for one of many applications of the Internet of Things domain. It is a combination of various domains such as image processing and robotics for development in the field of the Internet Of Things IoT now also termed as Internet Of Everything IoE after seeing its involvement in almost everything happening in our day to day lives. With increased dependency on home automation and wireless controlled equipment and gadgets, this project also shares some scope in home automation. To improve the functionality of gadgets and to increase their efficiency we thought of creating a device to cater to these needs and explore alongside our own interest in the field of the Internet of Things. This paper presents the design, functioning, and successful testing of a rover controlled wirelessly with help of hand gestures. Gesture Recognition has played important role in the field of Human Computer Interaction HCI . Vision based hand gesture recognition provides a great solution to various machine vision based applications by providing an easy interaction channel. For various automated machine control applications, an effective real time communication approach is required. In this paper, a vision based hand gesture based approach is presented for providing a real time control of Arduino based robot. Combining all of these concepts into a single device that can recognize hand gestures and sends data wirelessly to remote devices for surveillance and other purposes. Dr. Sunil Chavan | Prof. Revti Jadhav | Jayesh Mankar | Suyash Thakur | Shahid Ansari | Vatsal Panchal "Real-Time Hand Gesture Recognition Based Control of Arduino Robot" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-4 , June 2022, URL: https://www.ijtsrd.com/papers/ijtsrd49934.pdf Paper URL: https://www.ijtsrd.com/engineering/electronics-and-communication-engineering/49934/realtime-hand-gesture-recognition-based-control-of-arduino-robot/dr-sunil-chavan
IOT Cloud Based Real Time Automobile Monitoring SystemDr. Amarjeet Singh
Smart sensing has had a significant impact on defining our future in recent years. The field of IOT is a recent technical innovation that has caused a change in lifestyle (Internet of things). IoT refers to the internetworking of physical equipment and other items that are equipped with electronics, software, sensors, and network connectivity to allow data to be collected from them. Transportation is a booming industry in India, with the number of vehicles on the road increasing by the day. Monitoring vehicle metrics such as gasoline, temperature, and battery level without having to touch the car is perfect. In this digital age, a digital locking mechanism is desperately needed. When your vehicle is not with you, vehicle tracking is also essential. Here, car tracking is designed using GPS to conveniently locate the user's vehicle. The IoT cloud-based real-time automotive monitoring system is capable of monitoring our vehicle's metrics such as fuel level, battery level, engine temperature, and speed, as well as tracking the driver's alcohol percentage via an Android application. We receive an alert when one of these metrics crosses a certain threshold. Its Smart RFID digital key secures your vehicle even more than keys do. We may save our vehicle documents, driver's licences, insurance copies, and other documents in this project's Android application. Whenever an accident occurs, send a message to trusted people with the location.
Monitoring behavior, numerous actions, or any such information is considered
as surveillance and is done for information gathering, influencing, managing,
or directing purposes. Citizens employ surveillance to safeguard their
communities. Governments do this for the purposes of intelligence collection,
including espionage, crime prevention, the defense of a method, a person, a
group, or an item; or the investigation of criminal activity. Using an internet
of things (IoT) rover, the area will be secured with better secrecy and
efficiency instead of humans, will provide an additional safety step. In this
paper, there is a discussion about an IoT rover for remote surveillance based
around a Raspberry Pi microprocessor which will be able to monitor a
closed/open space. This rover will allow safer survey operations and would
help to reduce the risks involved with it.
Smart phone based robotic control for surveillance applicationseSAT Journals
Abstract The robotics and automation industry which is ruled the sectors from manufacturing to household entertainments. It is widely used because of its simplicity and ability to modify to meet changes of needs. The project is designed to develop a robotic vehicle using android application for remote operation attached with wireless camera for monitoring purpose. The robot along with camera can wirelessly transmit real time video with night vision capabilities. This is kind of robot can be helpful for spying purpose in war fields. Keywords: Android, Robot, Bluetooth, Robotic control
Smart phone based robotic control for surveillance applicationseSAT Publishing House
IJRET : International Journal of Research in Engineering and Technology is an international peer reviewed, online journal published by eSAT Publishing House for the enhancement of research in various disciplines of Engineering and Technology. The aim and scope of the journal is to provide an academic medium and an important reference for the advancement and dissemination of research results that support high-level learning, teaching and research in the fields of Engineering and Technology. We bring together Scientists, Academician, Field Engineers, Scholars and Students of related fields of Engineering and Technology
Sensor Based Motion Control of Mobile Car Robotijtsrd
A robot is a computer , mobile , or digital programmed virtual synthetic agent or electromechanical system that can perform tasks on its own. These frameworks stand out because of their ability to be controlled. As a result of this, a group of independent PCs appears to clients as a single controlling framework. Artificial Intelligence AI is required to construct technologies that can interact with the physical world in Robotics and Vision. AI systems such as robots can only communicate with the real world if they do their tasks accurately. The Robots efficiency is highly dependent on the applications vision techniques. As a result, the development of self driving and self contained robots relies heavily on visual techniques and procedures. A combination of temperature, gas, and fire sensors, as well as a buzzer, is used to detect areas that are more prone to explosions. In addition, a live video feed is available to keep tabs on the cars every move. Sensor based remote control of mobile robots in an unknown environment with obstacles is the focus of this paper. Prakash. P. | Mohamed Abdul Naseer R | Shajil Ameer V. V. "Sensor Based Motion Control of Mobile Car Robot" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-6 | Issue-3 , April 2022, URL: https://www.ijtsrd.com/papers/ijtsrd49688.pdf Paper URL: https://www.ijtsrd.com/engineering/electronics-and-communication-engineering/49688/sensor-based-motion-control-of-mobile-car-robot/prakash-p
These robot used in military are usually employed with the integrated system, including video screens, sensors, gripper and cameras. Android application controlled WARFARE ROBOT, built in with Robotic arm mechanism to pick up or place small objects like explosives , an on board Wireless video camera, Infrared based surface depth and irregularities perception and android application for movement and other controls of the Robot. The robot will serve as an appropriate gadget for the defence sector to reduce the loss of human life. Sushmita Shivalkar | Geeta Yadav | Swapnali Patil | Sakshi Dale ""Warfare Robot"" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-3 | Issue-3 , April 2019, URL: https://www.ijtsrd.com/papers/ijtsrd22888.pdf
Paper URL: https://www.ijtsrd.com/engineering/electronics-and-communication-engineering/22888/warfare-robot/sushmita-shivalkar
ijerst offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process. International Journal of Engineering Research and Science & Technology (IJERST) is an international online journal in English published Quarterly. All submitted research articles are subjected to immediate rapid screening by the editors, in consultation with the Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal.
Alinteri Journal of Agriculture Sciences The journal is an open access, international, double-blind peer-reviewed journal publishing research articles, Invited reviews, short communications, and letters to the Editor in the field of agriculture, fisheries, veterinary, biology, and closely related disciplines. We adopt the policy of providing open access to readers who may be interested in recent developments. Is being published online biannually as of 2007.
Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, and public sector management. IJMRR is an international forum for research that advances the theory and practice of management. The journal publishes original works with practical significance and academic value.
ijerst offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process. International Journal of Engineering Research and Science & Technology (IJERST) is an international online journal in English published Quarterly. All submitted research articles are subjected to immediate rapid screening by the editors, in consultation with the Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal.
Alinteri Journal of Agriculture Sciences aims to create an environment for researchers to introduce, share, read, and discuss recent scientific progress. We adopt the policy of providing open access to readers who may be interested in recent developments.
Alinteri Journal of Agriculture Sciences is being published online biannually as of 2007. The journal is an open access, international, double-blind peer-reviewed journal publishing research articles, Invited reviews, short communications, and letters to the Editor in the fields of agriculture, fisheries, veterinary, biology, and closely related disciplines. Alinteri Journal of Agriculture Sciences aims to create an environment for researchers to introduce, share, read, and discuss recent scientific progress. We adopt the policy of providing open access to readers who may be interested in recent developments.
Alinteri Journal of Agriculture Sciences aims to create an environment for researchers to introduce, share, read, and discuss recent scientific progress. We adopt the policy of providing open access to readers who may be interested in recent developments. Alinteri Journal of Agriculture Sciences is being published online biannually as of 2007. The journal is an open access, international, double-blind peer-reviewed journal publishing research articles, Invited reviews, short communications, and letters to the Editor in the fields of agriculture, fisheries, veterinary, biology, and closely related disciplines.
IJERST offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process. International Journal of Engineering Research and Science & Technology (IJERST) is an international online journal in English published Quarterly. All submitted research articles are subjected to immediate rapid screening by the editors, in consultation with the Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal.
ijerst offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process. Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal. International Journal of Engineering Research and Science & Technology (IJERST) is an international online journal in English published Quarterly. All submitted research articles are subjected to immediate rapid screening by the editors.
The journal publishes original works with practical significance and academic value. Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, and public sector management.
All papers submitted to IJMRR are subject to a double-blind peer review process. IJMRR is an international forum for research that advances the theory and practice of management. The journal publishes original works with practical significance and academic value. Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, and public sector management.
ijerst offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process. Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal. International Journal of Engineering Research and Science & Technology (IJERST) is an international online journal in English published Quarterly. All submitted research articles are subjected to immediate rapid screening by the editors.
The journal publishes original works with practical significance and academic value. All papers submitted to IJMRR are subject to a double-blind peer review process. Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, and public sector management.
Alinteri Journal of Agriculture Sciences is being published online biannually as of 2007. Alinteri Journal of Agriculture Sciences aims to create an environment for researchers to introduce, share, read, and discuss recent scientific progress. The journal is an open access, international, double-blind peer-reviewed journal publishing research articles, Invited reviews, short communications, and letters to the Editor in the fields of agriculture, fisheries, veterinary, biology, and closely related disciplines. We adopt the policy of providing open access to readers who may be interested in recent developments.
All submitted research articles are subjected to immediate rapid screening by the editors, in consultation with the Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal. ijerst offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process.
The journal publishes original works with practical significance and academic value. All papers submitted to IJMRR are subject to a double-blind Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, public sector management. peer review process. IJMRR is an international forum for research that advances the theory and practice of management.
All papers submitted to IJMRR are subject to a double-blind peer review process. The journal publishes original works with practical significance and academic value. Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, and public sector management. IJMRR is an international forum for research that advances the theory and practice of management.
The journal publishes original works with practical significance and academic value. Authors are invited to submit theoretical or empirical papers in all aspects of management, including strategy, human resources, marketing, operations, technology, information systems, finance and accounting, business economics, and public sector management. IJMRR is an international forum for research that advances the theory and practice of management. All papers submitted to IJMRR are subject to a double-blind peer review process.
Alinteri Journal of Agriculture Sciences aims to create an environment for researchers to introduce, share, read, and discuss recent scientific progress. We adopt the policy of providing open access to readers who may be interested in recent developments. The journal is an open access, international, double-blind peer-reviewed journal publishing research articles, Invited reviews, short communications, and letters to the Editor in the field of agriculture, fisheries, veterinary, biology, and closely related disciplines. Alinteri Journal of Agriculture Sciences is being published online biannually as of 2007.
ijerst offers a fast publication schedule whilst maintaining rigorous peer review; the use of recommended electronic formats for article delivery expedites the process.
International Journal of Engineering Research and Science & Technology (IJERST) is an international online journal in English published Quarterly. All submitted research articles are subjected to immediate rapid screening by the editors, in consultation with the Editorial Board or others working in the field as appropriate, to ensure they are likely to be of the level of interest and importance appropriate for the journal.
The Indian economy is classified into different sectors to simplify the analysis and understanding of economic activities. For Class 10, it's essential to grasp the sectors of the Indian economy, understand their characteristics, and recognize their importance. This guide will provide detailed notes on the Sectors of the Indian Economy Class 10, using specific long-tail keywords to enhance comprehension.
For more information, visit-www.vavaclasses.com
Instructions for Submissions thorugh G- Classroom.pptxJheel Barad
This presentation provides a briefing on how to upload submissions and documents in Google Classroom. It was prepared as part of an orientation for new Sainik School in-service teacher trainees. As a training officer, my goal is to ensure that you are comfortable and proficient with this essential tool for managing assignments and fostering student engagement.
2024.06.01 Introducing a competency framework for languag learning materials ...Sandy Millin
http://sandymillin.wordpress.com/iateflwebinar2024
Published classroom materials form the basis of syllabuses, drive teacher professional development, and have a potentially huge influence on learners, teachers and education systems. All teachers also create their own materials, whether a few sentences on a blackboard, a highly-structured fully-realised online course, or anything in between. Despite this, the knowledge and skills needed to create effective language learning materials are rarely part of teacher training, and are mostly learnt by trial and error.
Knowledge and skills frameworks, generally called competency frameworks, for ELT teachers, trainers and managers have existed for a few years now. However, until I created one for my MA dissertation, there wasn’t one drawing together what we need to know and do to be able to effectively produce language learning materials.
This webinar will introduce you to my framework, highlighting the key competencies I identified from my research. It will also show how anybody involved in language teaching (any language, not just English!), teacher training, managing schools or developing language learning materials can benefit from using the framework.
The Art Pastor's Guide to Sabbath | Steve ThomasonSteve Thomason
What is the purpose of the Sabbath Law in the Torah. It is interesting to compare how the context of the law shifts from Exodus to Deuteronomy. Who gets to rest, and why?
Read| The latest issue of The Challenger is here! We are thrilled to announce that our school paper has qualified for the NATIONAL SCHOOLS PRESS CONFERENCE (NSPC) 2024. Thank you for your unwavering support and trust. Dive into the stories that made us stand out!
Model Attribute Check Company Auto PropertyCeline George
In Odoo, the multi-company feature allows you to manage multiple companies within a single Odoo database instance. Each company can have its own configurations while still sharing common resources such as products, customers, and suppliers.
Welcome to TechSoup New Member Orientation and Q&A (May 2024).pdfTechSoup
In this webinar you will learn how your organization can access TechSoup's wide variety of product discount and donation programs. From hardware to software, we'll give you a tour of the tools available to help your nonprofit with productivity, collaboration, financial management, donor tracking, security, and more.
Welcome to TechSoup New Member Orientation and Q&A (May 2024).pdf
CSE journals
1. ISSN: 2249-7196
IJMRR/ AUG 2023/ Volume 13/Issue 3/Article No-1/01-10
Dr.A.NARMADA/ International Journal of Management Research & Review
CREATING A MULTI-PURPOSE INTERNET OF THINGS(IOT)
BASED SURVEILLANCE ROBOT
Dr.A.NARMADA1
Padmaja N2
, Vyshnavi A 3
, Alekhya M4
1
Professor & Head of the Department, Department of Electronics and Communication Engineering
2,3,4
B.Tech Students, Department of Electronics and Communication Engineering
1,2,3,4
Department of Electronics and Communication Engineering
Sridevi Women’s Engineering College
Vattinagulapally,Hyderabad,Telangana,India-500075
ece.hod.swec@gmail.com
nakkapadmaja2101@gmail.com
vyshnaviasaraa2@gmail.com
alekhyamullapudi191@gmail.com
Abstract—The main design behind this paper is to develop a robot that acts as the surveillance in domestic areas.
Nowadays robot plays key role in our day to day life activities thus reducing the errors and increasing the accuracy.
Robots can be controlled manually or automatically using android phones.. The purpose of this robot is to roam
around and provide information from the given environment and to send that obtained information to the user. In this
project, one can control the robot with the help of mobile or laptop through Internet of Things (IoT) and also can get
the images if any kind of obstacles are present both in daytime as well as at night with the help of wireless camera
from the robot. The robot can be controlled both in manual as well as in automated mode with the help of ESP32
microcontroller. This robot also uses various sensors that collects data and sends it to the ESP32 microcontroller
which controls the robot behavior. Along with the spy camera, user can also obtain the presence of metal bombs& it
detects if any kinds of dangerous metalbombs are planted with the help of proximity sensors .GSM &GPS modules
are present to track the location of the robot.Thus the action of surveillance can be performed. Further advancement in
our project can provide surveillance even in defense areas.
Keywords— IOT , Solar panel, NodeMCU(ESP32) , GSM module , GPS module , IP camera , Arduino IDE
software , proximity sensor , IR sensor.
I. INTRODUCTION
Robots are becoming increasingly important in people's daily lives as a result of rapid development in the
areas of automated technology and robotics, which allows them to do tasks formerly performed by humans but with
far fewer opportunities for error. The term "surveillance" refers to the practise of keeping a watchful eye on
a suspect or a suspected location.
Defence, public, industries, and workplaces are some of the most common settings where monitoring is essential.
The key benefit of using this robot for surveillance is that it eliminates the need for human workers. Using Internet of
Things (IoT) technology for motion control, this robot gets beyond the problem of short-range technologies.
A wireless nocturnal camera provides a actual feed of the robot's environment, allowing for vision-based control.
The wheels of a robot are directed by an android/PC in the Defence control unit, which is connected to the Internet of
Things. The robot's solar panel, which charges its battery, solves the problem of where to get electricity. The robot's
PIR sensor and metallic detector sensor detect movements and locate hidden landmines. When sensors trigger a stop
in the robot's movement, GSM technology sends a signal to the control unit. The GPS receiver not only keeps tabs on
the robot but also alerts the user to the precise position of the landmine or bomb.
The robot consists of ESP32(NODEMCU)which known as the heart of the robot. This robot also consists of DC
motors, wheel chassis, battery, Wi-Fi module and various types of sensors such as an ultrasonic sensor for obstacle
Detection, IR sensor. The robot can either operated automatically or manually. User end communicates with the robot
by implementing the concept of the Internet Of Things.
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This can be achieved through blynk software, which is used for IOT developing projects. Here we send the
commands to the robot by means of blynk software and they are received by Arduino microcontroller via Wi-Fi
module since both are interfaced with each other. Thus we can control the robot in a wireless manner. In this project,
we use a wireless transmitting camera that provides audio and video information that can be received at the user end
and action of surveillance can be performed.
II . LITERATURE SURVEY
A robot with a metal detector below it and a night vision camera to feed live footage of the area has been reported by
AhsanulHoque1 et al. The IP cameras they use for business do not have built-in microphones or speakers[2].Robotic
movement was invented by JigneshPatoliya and company, and it is operated through Bluetooth via an Android app.
Their work was constrained by the robot vehicle's limited capacity for communication [3, 4].
Arduino software, an android app, is believed to be utilised in other works in the same vein to manage the robot's
mobility through the Internet of Things. The cayenne programme is used to send instructions to the microcontroller
across the Wi-Fi module, a wireless network [5]. Robots equipped with PIR sensors have been reported by Shuddha
Chowdhury et al.[6] to aid in the recovery of victims of natural disasters such as cyclones, earthquakes, landslides,
and so on. The suggested robot had a severe flaw in that it was difficult to monitor its whereabouts in real time.
Researchers have described many prototypes of landmine detecting robots [7-10].
The robot used a solar panel for energy and a global positioning system (GPS) for navigation and tracking. In their
article [11], Souvik Saha et al. described a surveillance-based robot built using a Raspberry Pi, with software
implemented using the Linex operating system with the Python programming language. R.Praveen Kumar and
Dr.S.Smys reported on the evolution of the IoT, its significance, and the protocols it uses[12].
J. Gao, X. Gao, W. Zhu, J. Zhu and B. Wei [13], have proposed a new snake robot with all body drive system based
on rope system. This is a disaster management device and can climb into ruins to detect people Sushant Kumar and
Dr S. S. Solanki [14], 2016, discuss a system developed for remote surveillance of homes using an Arduino, IP
camera and Team Viewer to monitor the system. A DTMF controlled remote is used to switch on the PC, camera and
robot.
K. Mohammad Shoeb Shah, P.B. Barole[15] , 2016 represents a low-cost, cost-effective robot using microcontroller
Arduino UNO which can perform the act of tracking as well as rescue act. The robot is equipped with a passive
infrared sensor, ultrasonic range module, temperature and humidity DHT11 sensor, air quality sensor MQ-135,
accelerometer sensor, gyro sensor, magnetometer sensor, GPS sensor, Bluetooth and WIFI module, motor controller
and robotic arm.
G. Anandravisekar, A. Anto Clinton, T. Mukesh Raj, L. Naveen, M. Mahendran [16] , designed a robot that perform
surveillance in the household areas. The robot is controlled by a mobile phone or laptop via IoT using Cayenne
software. Used to send instructions for a robotic system. Arduino connected with Wi-Fi module ESP-8266 for an
unlimited range of operation accepts these commands.
S. Jagadesh et al [17-18] , designed this robotic vehicle using Wi-Fi technology for remote control of a wireless
camera mounted on the robot. This robot uses a Node MCU ESP8266 microcontroller for the desired operation. The
Wi-Fi module device receives the commands from the ESP8266 microcontroller.
PROBLEM STATEMENT:
In previous work we do not have the automatic controlled robot some need to control the machines of military
vehicles by this lead to death of the solders if any bomb are available. Military vehicles cannot detect the bombs and
any other metal contacts and they cannot know the location also. To avoid this we are implementing a new
technique.Because of this, many soldiers may have been killed in prior projects because they lacked access to the
automated controlled robots needed to operate the machinery of military vehicles. Bombs and other metal contacts are
invisible to military vehicles, and they also have no idea where they are. We're trying out a new method to prevent this
from happening.
III. IOT BASED MULTIFUNCTIONAL SURVEILLANCE ROBOT
The suggested robot has the potential to lessen casualties in border regions and other spots where military
monitoring is important. The operator may now roam any uncharted territory and conduct a rescue with the aid of live
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broadcasting. Landmines can be located using the robot's metal detector, and their exact locations can be pinpointed
using the GPS tracker it carries.
The design of our project i.e., IOT based Multipurpose Surveillance robot encourages the development of a robotic
vehicle based on Wi-Fi technology for remote operations connected with the phone that acts a camera mounted on the
robot for monitoring/surveillance purposes.
This IoT based Multipurpose Surveillance robot has or is embedded with a Node MCU (ESP32) microcontroller
for the desired operation and is generally used for monitoring purposes. The transmitting module on PC consists of
push buttons that send commands to the receiving module for controlling the movement of the robot either to right,
left, forward or backward. In the receiving module of this Surveillance robot, 2 DC motors are interfaced with the
Node MCU(ESP32) microcontroller to control its movement via motor driver IC(L298N). The Wi-Fi control
transmits the signals to the receiver and has a range of up to 400m.
The receiver collects and decodes the received signal’s before feeding them to the Node MCU (ESP32)
microcontroller to drive the DC motors via motor drivers(L298N). Interfacing is done between the device and the Wi-
Fi module. Wi-Fi module device receives the signals or commands from the ESP32 microcontroller.
Fig 1 : IOT based surveillance robot
Thus in order to increase the range system we can go connecting the user section with the internet which is
the main concept of the Internet of Things. For connecting the user system with the internet, here we have used
Blynk software to develop IoT applications. Thus through this Blynk software, we can easily send commands and
can easily control the robotic vehicle.
BLOCK DIAGRAM :
This IoT based Multipurpose Surveillance Robot Block Diagram is as follows shown in Figure:
The main components of our block diagram are Node MCU (ESP32), Metal Detector, Motor Driver(L298N),
Battery(12V), IR sensor, DC Motors and IP camera as shown in Fig - 2. DC motors are used for controlling
robot’s direction. Metal detector is used for detecting land mines which are placed on the ground during rescue
operations. IR sensor is used to determine if the robot is near to an object. BLYNK app is used to control our
robot.
SOLAR
PANEL
CHARGING
CONTROL
CIRCUIT
BATTERY
12V
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Fig 2 : Block Diagram of the robot
IV.DESIGN & IMPLEMENTATION:
For designing and implementing IOT based multifunctional surveillance robot there are few hardware and software
required :
A) HARDWARE REQUIREMENTS ARE AS FOLLOWS:
1. ESP32 Wi-fi module: ESP32 is a low-cost, low-power Microcontroller with an integrated Wi-Fi and Bluetooth.
It is the successor to the ESP8266 which is also a low-cost Wi-Fi microchip albeit with limited vastly limited
functionality.It is an integrated antenna and RF balun, power amplifier, low-noise amplifiers, filters, and power
management module.
2. Motor Driver:
An electric motor is a machine that does just that, turning electrical energy into useful motion. Electric motors, from a
technical standpoint, are devices that transform electrical energy into motion in matter.
3. Proximity Sensors :
Proximity sensors can detect a substance without really touching it, so they won't scratch or otherwise harm it.
Proximity detectors are able to sense the presence of an object electrically, without touching it, unlike devices like
limit switches.
4. IOT Server:
ESP32
(NODE
MCU)
WI-FI
MODULE
MOTOR
DRIVERS
GSM
GPS
IP
CAMERA
METAL
DETECTOR
IR
SENSOR
BLYNK
APP
IOT
SERVER
ANDROID/
PC
M1
M2
M3
M4
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The term "Internet of Things" (IoT) is used to refer to the interconnected network of gadgets, appliances, and other
"things" that are outfitted with electronics such as sensors, processors, wireless network modules, and other similar
components. These gadgets vary from the commonplace to the highly specialised.
5. GPS:
Position and time data can be obtained through the GPS (Global Positioning System), which is a satellite-based
navigation system. Anyone with a receiver for GPS and a clear view of at least four GPS satellites can use the system
at no cost. By accurately timing the signals transmitted by GPS satellites, a GPS receiver can determine its location.
These days, a GPS receiver is almost required for each modern smartphone.
6. GSM:
GSM, which stands for Global System for Mobile Communications, is a standard for cellular network communication
widely used for mobile phones and other devices. It uses a SIM card to connect to a GSM network, allowing the device to
send and receive data, make phone calls, or send SMS messages. This capability enables remote monitoring and control of
the device, making it suitable for applications where internet connectivity may not be available or reliable.
For example, in the context of a surveillance robot, integrating a GSM module can provide an alternative means of
communication when Wi-Fi or other internet connectivity is not accessible. It allows the robot to send status updates,
transmit captured images or video, and receive commands or instructions from a remote control station or a designated
mobile device via SMS or voice calls.
7. Solar Pannel:
Solar panels are made up of photovoltaic (PV) cells, which absorb sunlight and turn it into usable power. PV cells are
constructed from photovoltaic materials, which produce electrons when bombarded by light. The electricity known as
direct current (DC) is generated when electrons move across a circuit; this current can be used immediately or
conserved in batteries for later use. Solar panels can also be referred to as solar electric panels, PV modules, or solar
cell panels.
Solar panels provide several benefits, including the use of a clean and abundant energy source, the decrease of carbon
dioxide emissions, and the decrease of power costs. Cons include costly setup costs, dirty components that need
regular maintenance, and limited use during peak sunshine hours. Besides their commonplace usage in homes and
businesses, solar panels are increasingly being put to use in transportation and even outer space.
8. IR Sensor:
IR sensors are now often utilised as motion detectors, which may be found in lighting control systems and security
alarms. The sensor components pick up on the shifts in radiant heat (infrared radiation) across time and space caused
by people's motion within a predetermined angle range.
A) Software requirements are as follows:
1. Arduino IDE: - Arduino IDE is an open-source software. It makes it easy to write the code and upload it to the
board. This Arduino IDE software can be used with any Arduino board. It is open source software that is used to
write codes and upload it to the Arduino board. The Arduino IDE contains a text editor for writing codes, a message
area, a text console, a series of menus along with toolbar with buttons. The programming codes are known as sketch.
The sketches are
saved with the file extension .ino. It runs on Windows,
MAC and LINUX. Thus through this software we can code for the robotic movements and also for the sensors
interfaced with the arduino board.
2. BLYNK: - Blynk is a platform with IOS and Android apps to control Arduino via the internet. It’s a digital
dashboard where we can build a graphic interface for projects by dragging and dropping widgets.Blynk is a popular
IoT (Internet of Things) platform that provides a simple and user-friendly way to build mobile applications to control
and monitor IoT devices. It allows you to create custom mobile apps for iOS and Android devices that can
communicate with hardware devices via the internet.
B) FLOWCHART:
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The following Figure shows the flow chart of the working of IOT based Multipurpose Surveillance Robot. The battery
is connected and the robot is initialized or made ready to perform the action according to the code loaded into the
robot.
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Fig 3: Flowchart of robot working process
V. RESULT& DISCUSSION:
Once the hardware components are assembled on the robot carrying vehicle, the software was integrated into the
Arduino microcontroller and ESP32 Wi-Fi module of the robot components. The sensor systems were mounted on the
carrying vehicle and the power supply was switched on the robot. 4G data was enabled on Android phone and the Wi-
Fi hotspot was turned on to facilitate the ESP32 Wi-Fi module of robot to get connected with the Internet Cloud
platform.
This is the best way for IOT integration for any robots in the world. Immediately the robot connected to the Internet
Cloud platform using Wi-Fi hotspot of android phone. The Wi-Fi module of robot was displayed as
Wi-Fi hotspot user in the Tethering section of Wi-Fi settings. This confirmed the online coming of the Wi-Fi robot
and connectivity to outside world of Cloud technologies.
When the robot is turned ON , ESP32 wi-fi module gets activated through hotspot network and provides power supply
to the robot.
Fig 4: IOT surveillane Robot
The robot detects obstacle and any other objects through its way and detects them through IP camera and sends
object detected images to telegram app as shown in figure:
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Fig 5: Object detection output shown in telegram
When robot gets activated through smartphone by using Blynk app we can operate movement of it and
detection of metals can also be performed:
Fig 6:Robot Detecting metal shown in Blynk app
Fig 7: Metal detected at Loaction: https://www.google.com/maps/?q=17.42,78.29
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Fig 8:IR sensor detection shown in Blynk app
The robot model can be reported to build a robot whose motor movement and mode of operation i.e. manual or
automated are controlled by using a cayenne software that is used to build IoT based application. The wireless
night vision camera is used for video recording and the live stream of the video can be viewed through an
android application known as V380.
The IR sensor used on the robot sense the motion in its vicinity and notifies the same to the operator on the
android phone or PC by short message service (SMS) through GSM service module equipped on the robot. The
robot proposed can reduce the loss of life of on border areas, and other locations where military surveillance is
required. With the help of live video streaming the operator can perform the patrolling duty and recce any
unexplored area.
VI.CONCLUSION:
It was hypothesised that this system Researchers and scientists have developed robots as technology has advanced. In
hazardous environments, these robots are a lifesaver. The military is a major topic of focus nowadays. When a task is
too dangerous or complicated for humans to undertake, military robots are sent in. The role of a soldier's aide is taken
over by these robots. Many military groups today rely on military robots to carry out dangerous tasks. Video displays,
sensors, grippers, and cameras are common components of the integrated system utilised by military robots. diverse
military robots have diverse functions, hence their designs vary accordingly. In other words, military organisations
have benefited greatly from the use of these robots.
FUTURE SCOPE:
The further research can be carried out to make robot to move in rain. We can enhance the system by equipping and
increasing the sensors and its capabilities and to give greater accuracy by using the artificial intelligence.
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