The document summarizes research activities and directions of the Faculty of Electrical Engineering at Vyatka State University of Humanities. It discusses several ongoing and proposed research projects, including:
1. Studying non-sinusoidal modes of operation and higher harmonic components in power distribution networks.
2. Developing methods to reduce voltage fluctuations caused by abruptly variable loads.
3. Evaluating reactive power compensation techniques in industrial power systems to reduce losses.
4. Studying surges in electric power systems and developing protection measures for equipment.
The faculty seeks to improve power quality and reliability, increase energy efficiency, and reduce losses through collaboration with industry partners and other universities. Expected results include models, calculations
Electricity is the lifeline for any building or business. Electrical power distribution system within a building or facility serves as the central nervous system of a body. Find out, how Current Solutions PC can help you with an efficient safer, and more productive electrical system design. What you electrical engineers need to know about power distribution and more. Slide now to find out the Current Solutions PC difference.
This document provides an overview of control systems, including:
- Defining the basic components and configurations of control systems
- Describing open-loop and closed-loop systems, their advantages and disadvantages
- Classifying control systems as single-input single-output, multiple-input multiple-output, linear, non-linear, time-variant, or time-invariant
- Outlining a 6-step general process for designing a control system
- Assigning an activity for students to describe the operation of a control system from a selected sector by reverse engineering it according to the design steps
This document summarizes research on the state of the electrical/power engineering industry from a survey of 476 professionals. It finds that most respondents work at consulting engineering firms and specify products for new commercial construction projects. Trends in the industry include a shift toward retrofitting and renovating existing buildings. Standards and codes are changing frequently, and interoperability of systems poses challenges for engineers. Mobile tools are increasingly important for accessing product information.
POWER SYSTEM INTRODUCTION priyank pulkit rads praveerPRIYANK JAIN
The document provides an overview of the electricity sector in India. It discusses how electricity has become essential to modern life and the Indian economy. It then summarizes the history and development of the electricity sector in India, including key milestones like the 1991 reforms that opened the sector to private investment and the 2003 Electricity Act. The document also provides explanations of basic electricity concepts like voltage, current, power, frequency, as well as different components of the power system like generation, transmission, distribution and utilization.
Contiki os timer is an essential topic in contiki OS. This presentation describes the different types of timers and their API .
It is following the same explanation as contiki OS wiki.
This document provides an introduction to electric power systems. It discusses the key components of power systems including generators, transformers, substations, and loads. It also outlines the different voltage levels used in transmission and distribution networks. Specifically, it notes that transmission occurs at voltages such as 765kV, 400kV, and 220kV, while distribution occurs at lower voltages like 11kV, 415V, and 230V for households. The document aims to give students an overview of the structure and components that make up electric power systems.
Electrical power system is like the central nervous system within a facility. It is critical to the successful performance of business technology, equipment and operations in this competitive global economy. Current Solutions PC is one of the most trusted name of electrical engineering services since 1998. Checkout our electrical power engineering services and how we help businesses succeed with efficient electrical solutions.
This document provides an introduction to signals and systems. It defines a signal as a function that carries information about a physical phenomenon, and a system as an entity that processes signals to produce new outputs. Signals can be classified as continuous or discrete, deterministic or random, periodic or aperiodic, even or odd, energy-based or power-based, and causal or noncausal. The document discusses examples and properties of different signal types and how systems manipulate inputs to generate outputs. It covers key concepts like energy, power, periodicity, causality, and system modeling that are important foundations for signals and systems analysis.
Electricity is the lifeline for any building or business. Electrical power distribution system within a building or facility serves as the central nervous system of a body. Find out, how Current Solutions PC can help you with an efficient safer, and more productive electrical system design. What you electrical engineers need to know about power distribution and more. Slide now to find out the Current Solutions PC difference.
This document provides an overview of control systems, including:
- Defining the basic components and configurations of control systems
- Describing open-loop and closed-loop systems, their advantages and disadvantages
- Classifying control systems as single-input single-output, multiple-input multiple-output, linear, non-linear, time-variant, or time-invariant
- Outlining a 6-step general process for designing a control system
- Assigning an activity for students to describe the operation of a control system from a selected sector by reverse engineering it according to the design steps
This document summarizes research on the state of the electrical/power engineering industry from a survey of 476 professionals. It finds that most respondents work at consulting engineering firms and specify products for new commercial construction projects. Trends in the industry include a shift toward retrofitting and renovating existing buildings. Standards and codes are changing frequently, and interoperability of systems poses challenges for engineers. Mobile tools are increasingly important for accessing product information.
POWER SYSTEM INTRODUCTION priyank pulkit rads praveerPRIYANK JAIN
The document provides an overview of the electricity sector in India. It discusses how electricity has become essential to modern life and the Indian economy. It then summarizes the history and development of the electricity sector in India, including key milestones like the 1991 reforms that opened the sector to private investment and the 2003 Electricity Act. The document also provides explanations of basic electricity concepts like voltage, current, power, frequency, as well as different components of the power system like generation, transmission, distribution and utilization.
Contiki os timer is an essential topic in contiki OS. This presentation describes the different types of timers and their API .
It is following the same explanation as contiki OS wiki.
This document provides an introduction to electric power systems. It discusses the key components of power systems including generators, transformers, substations, and loads. It also outlines the different voltage levels used in transmission and distribution networks. Specifically, it notes that transmission occurs at voltages such as 765kV, 400kV, and 220kV, while distribution occurs at lower voltages like 11kV, 415V, and 230V for households. The document aims to give students an overview of the structure and components that make up electric power systems.
Electrical power system is like the central nervous system within a facility. It is critical to the successful performance of business technology, equipment and operations in this competitive global economy. Current Solutions PC is one of the most trusted name of electrical engineering services since 1998. Checkout our electrical power engineering services and how we help businesses succeed with efficient electrical solutions.
This document provides an introduction to signals and systems. It defines a signal as a function that carries information about a physical phenomenon, and a system as an entity that processes signals to produce new outputs. Signals can be classified as continuous or discrete, deterministic or random, periodic or aperiodic, even or odd, energy-based or power-based, and causal or noncausal. The document discusses examples and properties of different signal types and how systems manipulate inputs to generate outputs. It covers key concepts like energy, power, periodicity, causality, and system modeling that are important foundations for signals and systems analysis.
Results from fabrication and study of flexible piezoelectric harvesting device with ZnO nanostructured film are reported. Enhanced piezoelectric response is achieved in term of voltage to thickness ratio due to the nanobranched structure of the ZnO. The results are related to project “Study of the piezoelectric response of layered microgenerators on flexible substrates” - DH 07/13, funded by Bulgarian National Science Fund. Any collaborations are welcome! If you are interested, please write us at m_aleksandrova@tu-sofia.bg.
The Department of Electric Drive and Automation at Vyatka State University trains over 4,000 professionals in fields related to electric drive and automation. The department has 17 teaching staff including 2 Doctors of Science and 9 PhDs, and contains 6 laboratories equipped with modern research facilities and equipment. The department focuses on research areas such as control of nonlinear dynamic objects, electromechanical systems with semiconductor converters, computer control of thermal processes, and power savings.
The document discusses the use of modern balancing devices to improve power quality and efficiency in 0.4 kV electrical networks. It describes creating a digital model of a 0.4 kV three-phase network to determine necessary changes to meet voltage quality requirements while reducing transmission costs. The balancing device considered can significantly improve phase voltage quality and reduce power losses. Its power rating, installation location, and number are determined by the network configuration and operating mode. The digital model, technical loss data, and consumer usage data allow identifying commercial losses and their sources.
Review on power quality analysis by rajendra singh pptRajendnra Singh
The document provides a review of power quality analysis. It begins with an introduction that defines power quality and discusses traditional power system quantities. It then discusses the motivation for improved power quality due to the connection of more sensitive loads. The document reviews literature on power quality problems and solutions. It discusses common power quality issues such as harmonics, voltage fluctuations, dips and interruptions. It also reviews methods to improve power quality using custom power devices and mitigation strategies. Finally, it provides conclusions and a list of 20 references on topics related to power quality, renewable energy systems, and the use of custom power devices.
Презентация ОАО «НТЦ электроэнергетики» (eng)Rivets
The R&D Center for Power Engineering was created in 2006 by merging several power engineering institutes. It aims to develop reliable power supply technologies and modernize power equipment to extend its lifetime. The Center has over 500 employees with expertise in areas like power generation, transmission, distribution, and management. It carries out research projects, develops standards and guides, and provides certification services to improve reliability and efficiency across the Russian power industry.
Power Generation Using Piezoelectric TransducerIJERA Editor
The most basic need of today’s world is energy which is non-renewable source of energy available on earth. The
need is increasing day by day, to overcome this there is requirement of energy harvesting. This paper attempts
to show how man has been utilizing and optimizing kinetic energy. Current work also illustrates the working
principle of piezoelectric crystal and various sources of vibration for the crystal. “The idea of energy harvesting
is applicable to sensors as well as transducers that are placed and operated on some entities for a long time to
replace the sensor module batteries. Such sensors are commonly called self-powered sensors.” Embarked
piezoelectric transducer, which is an electromechanical converter, undergoes mechanical vibrations therefore
produce electricity. This power source has many applications as in agriculture, home application and street
lighting and as energy source for sensors in remote locations
The Differences between Single Diode Model and Double Diode Models of a Solar...ssuser793b4e
This research paper systematically reviewed and investigated single
diode model and double diode model of a solar photovoltaic systems in terms
of accuracy, differences under major unknown PV parameters, different
optimization and fabrication. This research paper reviewed the differences and
the similarities between the single diode model and double diode model. From
the review, it was clear that single diode model has less computation time and
number of unknown parameters compared to double diode model. The double
diode model on its own superiority is more accurate under solar shading
condition effect than single diode model but single diode model performs
better under high insolation levels. None of the two models is superior than
the other but the solar photovoltaic modelers/installers should bear the solar
irradiance of the environment before installation
The article is a continuation of the authors' work in research, mainly experimental, asynchronous electric drives with frequency regulation (AED FR) of hoisting-and-transport mechanisms, in which for constructive, operational and other reasons it is difficult to install additional sensors, for example encoders. The results of the analysis of the dynamics of AED FR with two types of sensorless control: vector and scalar are presented in this article. The study was conducted by mathematical modeling in the Simulink application of the MatLab software using standard control system models. The processes of sequential acceleration of the engine to fixed speeds with overload and load shedding on each of them were simulated. At the same time, the speed and effective values of the flux linkages of the rotor and stator and the stator current were monitored, by which the dynamics and efficiency of each type of control were evaluated. As in experimental studies, the dynamic and efficiency of a more stable scalar control was significantly improved by the use of dynamic positive feedback on stator current.
The Department of Electrochemical Production Technology at Vyatka State University was established in 1969 and has since conducted research in several key areas:
1) Studies of hydrogen absorption during electroplating and its connection to pH, resulting in improved cadmium coating electrolytes.
2) Investigation of pH effects on sodium amalgam stability, improving chlorine and alkali production.
3) Development of copper monochloride cathode manufacture and lithium-sulfur battery medium-temperature processes.
4) Modern equipment is used for research including potentiostats, impedancemeters, and collaboration with other university centers.
Analytical Estimation and Numerical Simulation of Vibration based Piezoelectr...cimran15
This summarizes an academic research paper that analytically and numerically simulates piezoelectric energy harvesters. It begins with an analytical model using Newton's laws of motion and Laplace transformations to estimate the electrical performance. Numerical simulations are also performed using ABAQUS finite element software to model lead zirconate titanate and barium titanate piezoelectric materials under various loading conditions and frequencies. The results are compared to published experimental data to validate the models. The goal is to characterize piezoelectric materials for energy harvesting applications.
Iaetsd electric power generation using piezoelectric crystalIaetsd Iaetsd
The document discusses using piezoelectric crystals to generate electric power. Piezoelectric materials can convert ambient vibration into electrical power. When mechanical stress is applied, piezoelectric crystals generate electrical potentials that can be harvested as a source of power. The document proposes using piezoelectric generators placed under foot traffic areas or attached to moving objects to capture kinetic energy and convert it into usable electric power through a voltage conversion and regulation process. Experimental results showed piezoelectric generators were able to charge a battery and power small electronic devices.
The document summarizes a master's degree program in Renewable Solar Energy offered at Saint Petersburg Electrotechnical University. The 2-year program focuses on the latest trends in renewable energy and photovoltaics, teaching students about underlying principles, materials science, and manufacturing technologies for solar modules. It combines courses in electronics, photonics, photovoltaics and renewable energy stations. Students conduct research on topics like high-efficiency solar panels and hybrid energy systems. The program is taught by renowned professors and offers opportunities for international students and research partnerships with leading institutions.
Sergey Anisimov is an innovative professional with over 7 years of research experience in fields such as graph theory, traffic theory, optimization algorithms, and smart grid algorithms. He holds a PhD in Computer Science from Nizhny Novgorod State Technical University, with his dissertation focusing on architectures for next generation computing grids and smart grids. He has published 10 papers and received 2 state registration certificates for computer programs relating to distributed control systems for electrical grids. Currently he works as a team lead and system architect developing software solutions for telecommunications and energy clients.
2021 a new in situ and operando measurement method to determine the electri...Ary Assuncao
This document summarizes a new method for measuring the electrical conductivity of the negative active material in lead-acid batteries during operation. The method uses a model electrode with four embedded probe wires to conduct in-situ four-point probe measurements of resistance during battery cycling. Numerical simulations support the analysis of measurement results. Using this method, the document studies the evolution of discharge capacity, electrical resistance, and electrical conductivity over 10 cycles and correlates the results to known structural changes in the active material that occur during cycling.
Implementation of Dynamic Performance Analysis of Electric Vehicular Technologyijtsrd
The choice of this paper is to enhance the reader widespread operational traits with various kinds of batteries, the charge and discharge dynamics of the battery version with six battery sorts, an upgrade and smooth to use battery dynamic model. Comparison among the six sorts of batteries, diverse parameters of the battery and Simulation results deliver the only of a type load situations of the Li Ion battery. The proposed assessment is completed to turn out to be privy to the immoderate overall performance of Li Ion battery evaluate to 6 batteries and its far studies for future paintings of the researchers. This paper introduces a comprehensive analysis of the dynamic overall performance of an electric vehicle system using one in all a kind manipulate algorithms. The whole mathematical models of the electric vehicle and its motor force device are defined in a scientific manner. Furthermore, the vehicle dynamics are tested with several control topologies to investigate the maximum suitable one. Konanki Srinivasa Rao | Inampudi Anil Babu | Mondru Chiranjeevi "Implementation of Dynamic Performance Analysis of Electric Vehicular Technology" 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/ijtsrd49718.pdf Paper URL: https://www.ijtsrd.com/engineering/electrical-engineering/49718/implementation-of-dynamic-performance-analysis-of-electric-vehicular-technology/konanki-srinivasa-rao
The document describes an electronics workshop for students. It outlines the mission of the department, which is to provide good technical education and enhance competency through infrastructure, resources, teaching, and committed faculty. It also aims to provide platforms for developing professionalism and ethics in students. The workshop aims to create a strong foundation to enable students' career choices. The document then lists the experiments covered in the workshop, including studying basic electronic components like resistors, capacitors, inductors, diodes, and transistors. It provides details on one experiment to identify specifications of components by referring to datasheets and understand their applications.
Performance Enhancement of MPPT Based Solar PV System using Neural Networkijtsrd
In this paper, using artificial neural network ANN for tracking of maximum power point is discussed. Error back propagation method is used in order to train neural network. Neural network has advantages of fast and precisely tracking of maximum power point. In this method neural network is used to specify the reference voltage of maximum power point under di erent atmospheric conditions. By properly controlling of dc dc boost converter, tracking of maximum power point is feasible. To verify theory analysis, simulation result is obtained by using MATLAB SIMULINK. Rakesh Kumar | Pramod Kumar Rathore "Performance Enhancement of MPPT Based Solar PV System using Neural Network" 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/ijtsrd50540.pdf Paper URL: https://www.ijtsrd.com/engineering/electrical-engineering/50540/performance-enhancement-of-mppt-based-solar-pv-system-using-neural-network/rakesh-kumar
Material Science and Technology of MaterialsVisionary_
The department was founded in 1963 and trains undergraduate and graduate students in material science and technology. Research focuses on developing new alloys with high damping capacity, including iron, zinc-aluminum, and manganese-copper alloys. Over 300 publications and several patents have resulted from this research. Future work will explore nanostructured alloys and shape memory alloys for medical applications.
The Department of Mechanical Engineering Technology at Vyatka State University in Kirov, Russia was founded in 1963 and trains undergraduate, graduate, and post-graduate students. The department's research focuses on engineering and design quality assurance processes for machining and assembly, and staff have published over 1000 papers. Current research areas include automation systems, low-waste manufacturing techniques, and integrated production technologies using nanostructured materials.
Results from fabrication and study of flexible piezoelectric harvesting device with ZnO nanostructured film are reported. Enhanced piezoelectric response is achieved in term of voltage to thickness ratio due to the nanobranched structure of the ZnO. The results are related to project “Study of the piezoelectric response of layered microgenerators on flexible substrates” - DH 07/13, funded by Bulgarian National Science Fund. Any collaborations are welcome! If you are interested, please write us at m_aleksandrova@tu-sofia.bg.
The Department of Electric Drive and Automation at Vyatka State University trains over 4,000 professionals in fields related to electric drive and automation. The department has 17 teaching staff including 2 Doctors of Science and 9 PhDs, and contains 6 laboratories equipped with modern research facilities and equipment. The department focuses on research areas such as control of nonlinear dynamic objects, electromechanical systems with semiconductor converters, computer control of thermal processes, and power savings.
The document discusses the use of modern balancing devices to improve power quality and efficiency in 0.4 kV electrical networks. It describes creating a digital model of a 0.4 kV three-phase network to determine necessary changes to meet voltage quality requirements while reducing transmission costs. The balancing device considered can significantly improve phase voltage quality and reduce power losses. Its power rating, installation location, and number are determined by the network configuration and operating mode. The digital model, technical loss data, and consumer usage data allow identifying commercial losses and their sources.
Review on power quality analysis by rajendra singh pptRajendnra Singh
The document provides a review of power quality analysis. It begins with an introduction that defines power quality and discusses traditional power system quantities. It then discusses the motivation for improved power quality due to the connection of more sensitive loads. The document reviews literature on power quality problems and solutions. It discusses common power quality issues such as harmonics, voltage fluctuations, dips and interruptions. It also reviews methods to improve power quality using custom power devices and mitigation strategies. Finally, it provides conclusions and a list of 20 references on topics related to power quality, renewable energy systems, and the use of custom power devices.
Презентация ОАО «НТЦ электроэнергетики» (eng)Rivets
The R&D Center for Power Engineering was created in 2006 by merging several power engineering institutes. It aims to develop reliable power supply technologies and modernize power equipment to extend its lifetime. The Center has over 500 employees with expertise in areas like power generation, transmission, distribution, and management. It carries out research projects, develops standards and guides, and provides certification services to improve reliability and efficiency across the Russian power industry.
Power Generation Using Piezoelectric TransducerIJERA Editor
The most basic need of today’s world is energy which is non-renewable source of energy available on earth. The
need is increasing day by day, to overcome this there is requirement of energy harvesting. This paper attempts
to show how man has been utilizing and optimizing kinetic energy. Current work also illustrates the working
principle of piezoelectric crystal and various sources of vibration for the crystal. “The idea of energy harvesting
is applicable to sensors as well as transducers that are placed and operated on some entities for a long time to
replace the sensor module batteries. Such sensors are commonly called self-powered sensors.” Embarked
piezoelectric transducer, which is an electromechanical converter, undergoes mechanical vibrations therefore
produce electricity. This power source has many applications as in agriculture, home application and street
lighting and as energy source for sensors in remote locations
The Differences between Single Diode Model and Double Diode Models of a Solar...ssuser793b4e
This research paper systematically reviewed and investigated single
diode model and double diode model of a solar photovoltaic systems in terms
of accuracy, differences under major unknown PV parameters, different
optimization and fabrication. This research paper reviewed the differences and
the similarities between the single diode model and double diode model. From
the review, it was clear that single diode model has less computation time and
number of unknown parameters compared to double diode model. The double
diode model on its own superiority is more accurate under solar shading
condition effect than single diode model but single diode model performs
better under high insolation levels. None of the two models is superior than
the other but the solar photovoltaic modelers/installers should bear the solar
irradiance of the environment before installation
The article is a continuation of the authors' work in research, mainly experimental, asynchronous electric drives with frequency regulation (AED FR) of hoisting-and-transport mechanisms, in which for constructive, operational and other reasons it is difficult to install additional sensors, for example encoders. The results of the analysis of the dynamics of AED FR with two types of sensorless control: vector and scalar are presented in this article. The study was conducted by mathematical modeling in the Simulink application of the MatLab software using standard control system models. The processes of sequential acceleration of the engine to fixed speeds with overload and load shedding on each of them were simulated. At the same time, the speed and effective values of the flux linkages of the rotor and stator and the stator current were monitored, by which the dynamics and efficiency of each type of control were evaluated. As in experimental studies, the dynamic and efficiency of a more stable scalar control was significantly improved by the use of dynamic positive feedback on stator current.
The Department of Electrochemical Production Technology at Vyatka State University was established in 1969 and has since conducted research in several key areas:
1) Studies of hydrogen absorption during electroplating and its connection to pH, resulting in improved cadmium coating electrolytes.
2) Investigation of pH effects on sodium amalgam stability, improving chlorine and alkali production.
3) Development of copper monochloride cathode manufacture and lithium-sulfur battery medium-temperature processes.
4) Modern equipment is used for research including potentiostats, impedancemeters, and collaboration with other university centers.
Analytical Estimation and Numerical Simulation of Vibration based Piezoelectr...cimran15
This summarizes an academic research paper that analytically and numerically simulates piezoelectric energy harvesters. It begins with an analytical model using Newton's laws of motion and Laplace transformations to estimate the electrical performance. Numerical simulations are also performed using ABAQUS finite element software to model lead zirconate titanate and barium titanate piezoelectric materials under various loading conditions and frequencies. The results are compared to published experimental data to validate the models. The goal is to characterize piezoelectric materials for energy harvesting applications.
Iaetsd electric power generation using piezoelectric crystalIaetsd Iaetsd
The document discusses using piezoelectric crystals to generate electric power. Piezoelectric materials can convert ambient vibration into electrical power. When mechanical stress is applied, piezoelectric crystals generate electrical potentials that can be harvested as a source of power. The document proposes using piezoelectric generators placed under foot traffic areas or attached to moving objects to capture kinetic energy and convert it into usable electric power through a voltage conversion and regulation process. Experimental results showed piezoelectric generators were able to charge a battery and power small electronic devices.
The document summarizes a master's degree program in Renewable Solar Energy offered at Saint Petersburg Electrotechnical University. The 2-year program focuses on the latest trends in renewable energy and photovoltaics, teaching students about underlying principles, materials science, and manufacturing technologies for solar modules. It combines courses in electronics, photonics, photovoltaics and renewable energy stations. Students conduct research on topics like high-efficiency solar panels and hybrid energy systems. The program is taught by renowned professors and offers opportunities for international students and research partnerships with leading institutions.
Sergey Anisimov is an innovative professional with over 7 years of research experience in fields such as graph theory, traffic theory, optimization algorithms, and smart grid algorithms. He holds a PhD in Computer Science from Nizhny Novgorod State Technical University, with his dissertation focusing on architectures for next generation computing grids and smart grids. He has published 10 papers and received 2 state registration certificates for computer programs relating to distributed control systems for electrical grids. Currently he works as a team lead and system architect developing software solutions for telecommunications and energy clients.
2021 a new in situ and operando measurement method to determine the electri...Ary Assuncao
This document summarizes a new method for measuring the electrical conductivity of the negative active material in lead-acid batteries during operation. The method uses a model electrode with four embedded probe wires to conduct in-situ four-point probe measurements of resistance during battery cycling. Numerical simulations support the analysis of measurement results. Using this method, the document studies the evolution of discharge capacity, electrical resistance, and electrical conductivity over 10 cycles and correlates the results to known structural changes in the active material that occur during cycling.
Implementation of Dynamic Performance Analysis of Electric Vehicular Technologyijtsrd
The choice of this paper is to enhance the reader widespread operational traits with various kinds of batteries, the charge and discharge dynamics of the battery version with six battery sorts, an upgrade and smooth to use battery dynamic model. Comparison among the six sorts of batteries, diverse parameters of the battery and Simulation results deliver the only of a type load situations of the Li Ion battery. The proposed assessment is completed to turn out to be privy to the immoderate overall performance of Li Ion battery evaluate to 6 batteries and its far studies for future paintings of the researchers. This paper introduces a comprehensive analysis of the dynamic overall performance of an electric vehicle system using one in all a kind manipulate algorithms. The whole mathematical models of the electric vehicle and its motor force device are defined in a scientific manner. Furthermore, the vehicle dynamics are tested with several control topologies to investigate the maximum suitable one. Konanki Srinivasa Rao | Inampudi Anil Babu | Mondru Chiranjeevi "Implementation of Dynamic Performance Analysis of Electric Vehicular Technology" 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/ijtsrd49718.pdf Paper URL: https://www.ijtsrd.com/engineering/electrical-engineering/49718/implementation-of-dynamic-performance-analysis-of-electric-vehicular-technology/konanki-srinivasa-rao
The document describes an electronics workshop for students. It outlines the mission of the department, which is to provide good technical education and enhance competency through infrastructure, resources, teaching, and committed faculty. It also aims to provide platforms for developing professionalism and ethics in students. The workshop aims to create a strong foundation to enable students' career choices. The document then lists the experiments covered in the workshop, including studying basic electronic components like resistors, capacitors, inductors, diodes, and transistors. It provides details on one experiment to identify specifications of components by referring to datasheets and understand their applications.
Performance Enhancement of MPPT Based Solar PV System using Neural Networkijtsrd
In this paper, using artificial neural network ANN for tracking of maximum power point is discussed. Error back propagation method is used in order to train neural network. Neural network has advantages of fast and precisely tracking of maximum power point. In this method neural network is used to specify the reference voltage of maximum power point under di erent atmospheric conditions. By properly controlling of dc dc boost converter, tracking of maximum power point is feasible. To verify theory analysis, simulation result is obtained by using MATLAB SIMULINK. Rakesh Kumar | Pramod Kumar Rathore "Performance Enhancement of MPPT Based Solar PV System using Neural Network" 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/ijtsrd50540.pdf Paper URL: https://www.ijtsrd.com/engineering/electrical-engineering/50540/performance-enhancement-of-mppt-based-solar-pv-system-using-neural-network/rakesh-kumar
Material Science and Technology of MaterialsVisionary_
The department was founded in 1963 and trains undergraduate and graduate students in material science and technology. Research focuses on developing new alloys with high damping capacity, including iron, zinc-aluminum, and manganese-copper alloys. Over 300 publications and several patents have resulted from this research. Future work will explore nanostructured alloys and shape memory alloys for medical applications.
The Department of Mechanical Engineering Technology at Vyatka State University in Kirov, Russia was founded in 1963 and trains undergraduate, graduate, and post-graduate students. The department's research focuses on engineering and design quality assurance processes for machining and assembly, and staff have published over 1000 papers. Current research areas include automation systems, low-waste manufacturing techniques, and integrated production technologies using nanostructured materials.
This document provides information about the Department of Inorganic and Physical Chemistry at Vyatka State University in Kirov, Russia. It discusses the department's history since being founded in 1967, lists the heads of the department, outlines the main research directions from 1967-2010 and 2010 to present, and provides details on funding, intellectual property, publications, training of PhD students, current staff, partners
The Department of General Chemistry was established in 1963 and has focused on research involving rare metals and high-temperature electrochemistry. Major developments include introducing boronizing steel and developing heat storage mixtures. Current research examines diffusion coatings using rare earth elements in molten halides. The department collaborates with other institutions and has various equipment for analysis.
This document summarizes research from the Department of Building Constructions at a Faculty of Civil Engineering and Architecture. It outlines three key areas of research: 1) wooden structures and connections, 2) frame-membrane steel constructions, and 3) the stress-strain state of reinforced concrete structures. For the second area, research focuses on calculating plane prestressed cylindrical membranes and developing frame and rod assemblies. This research has resulted in various publications, patents, and the defense of two PhD dissertations on reinforced concrete structures.
The Chair of philosophy, sociology and psychology at Vyatka State University was founded in 1974 and conducts research in these fields. It has 14 faculty members, including 2 Doctors of Science and 7 Candidates of Science. The Chair runs sociological surveys on topics like biotechnology development, youth education needs, and pension employment. Students participate in surveys and competitions. The Chair aims to train new researchers and publishes research in journals and books. It cooperates with other universities and research institutes on projects regarding social issues.
Information technology in Mechanical engineeringVisionary_
The document summarizes information about the Department of Information Technology in Mechanical Engineering at Vyatka State University. It discusses the department's history, activities in undergraduate and graduate education, research areas including computer-aided design and laser plasma treatment of materials. The department trains students and conducts research using software from companies like Siemens, Autodesk, and Delcam. Prospects for the department include obtaining patents, developing theoretical models, introducing new software, and expanding education through specialized courses and distance learning.
The Department of Cultural Studies and Journalism at Vyatka State University was established in 2002 and renamed in 2011. It has over 20 faculty members, many with PhDs or higher degrees. The department offers bachelor's and master's programs in cultural studies, journalism, advertising and public relations. Faculty research focuses on cultural studies, media studies, linguistics, folklore, business culture, and more. The department also organizes academic conferences and has grant-funded projects on cultural landscapes and media culture.
The Chair of Descriptive Geometry and Drawing at Vyatka State University in Kirov, Russia has 15 professorial staff and focuses on 6 main scientific areas: 1) modeling of aircraft surfaces, 2) improving electronic educational support for graphics, 3) superplastic metal forming processes, 4) vibration in machining non-rigid shafts, 5) creating spatial designs from birch bark, and 6) alternative fuels for engines. Over the years, the Chair has published works, filed patents, and educated students and staff in these applied areas of geometry, graphics, and materials engineering.
The document summarizes the activities and areas of research of the Department of General History. It outlines the scientific fields and projects of individual professors, including topics related to ethnic and cultural heritage, archaeology, history of various regions and periods. It also describes the department's student scientific society, expeditions, international cooperation with universities in Europe and research internships abroad.
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2. Future research directions
and cooperation in the fields of
ELECTRICITY
ELECTRIC ENGINEERING
THERMAL ENGINEERING
E-mail: golgovskih@vyatsu.ru, etf_dekanat@vyatsu.ru
Ph.: +7 (8332)53-04-81, 53-81-20
Faculty of Electrical Engineering
Dean - PhD, Assoc. Prof.,
Golgovskykh Аlexander Vladimirovich
3. Future research directions
and cooperation in the field of energy saving
ELECTRICITY
E-mail: basmanov@vyatsu.ru
Ph.: +7 (8332)530274
Department of Electrical supply
Head of The Department -
PhD,Assoc.Prof.,
Basmanov Vladislav Gennadyevich
4. Investigation of power quality problems in electrical power
systems and enterprise networks
Line of research involves solving the problem of increasing energy efficiency in the
transport and distribution of electrical energy by reducing the negative impact of
consumers with abruptly variable load on the parameters of quality of electric energy.
There is a minimum of required equipment to perform the
research. On this subject were defended three Ph.D. thesis,
also there are 6 patents.
Expected results
- recommendations to reduce the potential negative impact of voltage fluctuations that arise
while abruptly variable load working;
- project of manufacturing instructions (possibly standard organization) regulating sharing food
of abruptly variable industrial loads and residential customers;
- assessment methodology of household devices and sources of abruptly variable load sharing
power;
- mathematical model of the steady state of higher harmonic components of the power
distribution networks of power;
- guidance on accounting for the higher harmonic components of the voltage and current at the
point of common coupling.
Achieved results
5. Main publications
• Cherepanov V.V., Derendayeva L.V. Mathematical model of the mode
of the higher harmonics of power distribution networks. «Problems of
power» №7-8.-Kazan,2007.– pp.51-57.
• Cherepanov V.V., Derendayeva L.V. Method of calculation of the higher
harmonics at the point of connection of consumers to the distribution
network of power. «Mechanization and Electrification of Agriculture» №4,
2008. – Moscow, 2008. - pp. 10-12.
• Cherepanov V.V., Derendayeva L.V. Calculation of the parameters of
non-sinusoidal regimes in the point of common connection. «Perspectives
of Science», №9 (24).-Tyumen, 2011. - pp. 101-105.
• Bessolitzyn А.V., Bakshaeva N.S., Votintzev А.V., Кalinina Е.А.
Influence of power equipment on changes of voltage fluctuations in the
electricity system. «Perspectives of Science». №11 (38).- Tyumen, 2012. -
pp. 109-117.
6. • Bakshaeva N.S. Study of the possibility of joint supply household
consumers with abruptly variable loads of typical sawmill production plants.
«Electrician» № 7. Moscow, «Science and Technology», 2012. - pp.4-10.
• Bakshaeva N.S study of voltage fluctuations at different levels of power
supply systems, created at work of abruptly variable loads in wood
processing production. «Electrician» № 8. Мoscow, «Science and
Technology», 2012. - pp. 12-21.
• Bessolitzyn А.V., Bakshaeva N.S., Votintzev А.V., Кalinina Е.А.
Experimental studies of abruptly variable loads on the tires of 0.4 kV
transformer substation, power supply fluctuations and municipal
customers. «Energy security and conservation», №6. Moscow, 2012. - pp.
40-45.
Main publications
7. Reactive power compensation in enterprises power
systems
The proposed research project aims to reduce electricity losses during
transportation, distribution and consumption of electrical networks of industrial
enterprises through the application of new approaches to the generation and
consumption of reactive power and voltage level in the electrical network.
On the subject was protected one master's thesis, there is
one patent for utility model (developed adaptive control of
reactive power), developed a mathematical model of
adaptive control of reactive power capacitor bank.
Expected results
- model, an algorithm, a computer program for the optimum amount of power and speed range
switching capacitor bank of steps;
- research methodology for choosing the optimal number of stages and the power of capacitor
bank;
- research methodology for choosing the optimal interval switching capacitor of bank steps;
- method of selecting the optimum amount of power levels and range switching capacitor of
bank steps;
- mathematical model, the algorithm of the system of centralized control consumption and the
generation of reactive power and voltage control.
Achieved results
8. 1. Cherepanov V.V., Basmanov V.G. On the need for reactive power
controller using prediction. «Problems of power» №11-12 -Кazan, 2006. -
pp. 38-40.
2. Cherepanov V.V., Rebro I.I., Basmanov V.G. Adaptive controller of
reactive power. Utility patent № 61481, МПК H 02 J 13/00, G 05 F 1/00;
14.11.05; № 6.
3. Basmanov V.G., Poroshin D.А. Development of optimal control system
generation and consumption of reactive power in power systems of
industrial enterprises in order to reduce power losses during transport,
distribution and consumption. «Energy security and conservation». №1 –
Moscow, 2013.
4. Basmanov V.G., Poroshin D.А. Mathematical model of adaptive control of
reactive power and the results of its application to the study for the optimum
gear change interval capacitor banks. «Electrician». - №7. – Moscow,
«Science and Technology», 2012. - pp.2-7.
Main publications
9. Specialists training
1. Ozhegov А.N. , dissertation topic: «Development of
methods for calculating the non-sinusoidal mode power
supply systems of industrial enterprises»(2004).
2. Basmanov V.G., dissertation topic: «Development of a
set of electrical controls power consumption of
household consumers» (2006).
3. Derendayeva L.V., dissertation topic: «Development of
methods for calculating the non-sinusoidal voltage at
the point of common coupling» (2010)
10. Main partners
1. Moscow Power Engineering Institute, Department
«Power supply of industrial enterprises».
2.Kazan State Power Engineering University, Department
«Electrical equipment and electrical equipment of companies,
organizations and institutions».
3. Togliatti State University, Department «Power supply
and electrical engineering»
4. Branch of Ufa State Oil Technical University, Salavat,
Department «Electrical equipment and automation of industrial
enterprises»
11. 5. JSC «VTK-Energo», Kirov
6. Kirov Regional State Unitary Enterprise «Agency of Energy
Saving», Kirov
7. Branch of«Kirovenergo» JSC «MRSK
Center and Volga Region»
8. Ltd. «Energosnab», Kirov
9. JSC «StroyEnergoМоntazh»
Main partners
12. Department of Electric power systems
Head of the Department - PhD, Assoc.
Prof.,
Vilner Аlexander Viktorovich
Email: vilner@vyatsu.ru, kaf_ees@vyatsu.ru
Ph.: +7 (8332)530492
Future research directions
and cooperation in the field of energy transfer
13. Study of technologies and models to predict daily Load energy in an unstable inertia
energy to refine the design values
Study of characteristics of the wires of the new generation for overhead
power lines of high and extra-high voltage
Areas of research
14. The study of technologies and models to predict daily load energy
in an unstable inertia energy to refine the design values
Conducting research correlations regime and climatic
parameters in order to determine the response lag changes in load
to changing climatic factors.
The analysis of the application of the theory of approximation and the
use of neural networks to the prediction of daily energy load values for the
changes in climatic conditions for periods of stable and unstable inertia of
energy consumption; developed a methodology and calculations were made to
determine the natural oscillations of the power system.
Expected results
• Depending on the influence of external conditions on the hourly and daily values
energy consumption in the system with distributed weak links;
• Recommendations for operating industry-specific software
complexes to refine the calculations of daily energy consumption;
• The technique that allows to increase the accuracy and reliability of
the calculations forecasting energy consumption in the context of an acute
shortage of energy resources.
Achieved results
15. Main publications
1. N.G.Repkina, I.V. Аraslanova / eural network technology in predicting energy
consumption /Mechanization and Electrification of Agriculture,2008,№4,с.12-13
2. Repkina N.G./ Study of the statistical estimates of energy consumption
[electronic resource]/ N.G.Repkina, А.V.Balsis// Society, science, innovation
(2011) Annual Open All-Russian Scientific and Technical Conference,
sourcebook.
3. Repkina N.G., Kulikov Е.V. /Statistical analysis of daily energy consumption
[electronic resource]/ N.G.Repkina, Kulikov Е.V.// Society, science, innovation
(2012) Annual Open All-Russian Scientific and Technical Conference,
sourcebook.
16. Investigation of the characteristics of a new generation of
conductors for overhead power lines of high and very high
voltage
The study of mechanical, electrical, and technical and
economic parameters of power transmission lines, made bare wires
of new brands (heat-resistant, compact, with a core of basalt and
carbon), produced by JSC “Kirscable”.
17. Achieved results
1. An assessment of the economic efficiency of power transmission lines, made bare
wires to the compact core increased mechanical strength.
2. Defined technical and economic indicators of using bare wire compact with basalt
core.
3. The method of calculating the temperature and the current carrying wires overhead
transmission lines, taking into account current loads, heating, solar radiation, air
temperature, wind speed and direction.
Funding and implementation
New type of bare conductors for overhead power lines of high and very high
voltage, combining the best qualities of the previously developed brands wires.
Expected results
The direction of research is funded by the JSC "Kirscable.“
There also will be implemented research results.
18. 1. Vikharev А.P. The calculation of temperature wires overhead transmission lines,
taking into account current load, speed and temperature // Russia annual Scientific
and Technical Conference «Society, science, innovation» (2012), sourcebook.
2. Cherepanov G.А., Аraslanova О.Sh. Defining the scope of heat-resistant steel-
aluminum wire // Russia annual Scientific and Technical Conference «Society,
science, innovation» (2012), sourcebook.
Main publications
19. Study of surges in electric power systems, networks, power
systems
• study of ferroresonance processes in networks;
• study of switching surges;
• development of measures to protect the equipment against overvoltage,
the rationale for the characteristics of non-linear surge.
20. 1. Vasyura Yu.F., Vilner А.V., Vychegzhanin А.V. Features of surges to earth faults in
networks with current limiting reactors // Sourcebook, Kirov, 2007, pp. 323-327.
2. Vasyura Yu.F., Vilner А.V., Vychegzhanin А.V. A practical example of
ferroresonance processes in an air network 35 kV // National Annual Scientific
Conference «Society, science, innovation» (2011): sourcebook.
3. Vasyura Yu.F. The reasons for "multi" damage in networks with high-voltage motors
// National Annual Scientific Conference «Society, science, innovation» (2012):
sourcebook.
4. Bannikov S.О., Vasyura Yu.F. Calculation of earth fault currents in networks with
resistance neutral earthing related mutual capacitance double circuit transmission line //
National Annual Scientific Conference «Society, science, innovation» (2012):
sourcebook.
Main publications
22. Department of Electric Power Stations
Head of the Department - PhD, Assoc.
Prof, Novikov Alexey Viktorovich
Future research directions and cooperation
in the field of electric power systems reliability
E-mail: kaf@elst.kirov.ru
http://es.etf.vyatsu.ru
Ph.: +7 (8332)530890
23. Areas of research
The study of symmetric and asymmetric
modes of operation of electric power systems
Development of instruments and equipment for the
measurement and testing of electrical equipment and
structural elements of energy facilities
Evaluation of equipment electromagnetic compatibility
24. The study of symmetric and asymmetric modes of electric power
systems operation
Main subjects:
• Evaluation of the possibility of overhead lines transfer in
the load unbalance mode to ensure uninterrupted
power supply to consumers;
• Study of safe operation conditions under the influence
of the induced voltage;
• Definition of fault location in overhead power lines.
Expected results:
• Reducing damage from the electricity undersupply to
consumers;
• Reducing injuries among staff serving overhead lines
and substations;
• Reducing the duration of an emergency outage
overhead;
• Improving the reliability of power supply.
25. Development of instruments and equipment for measurement and
testing of electrical equipment and components of energy facilities
Main subjects:
• Reducing labor costs and performance time in
determining the status of power lines;
• Determination of conditions of security personnel
while working on overhead lines;
• Getting Information for the planning of for the
planning of transformer equipment repairs.
Expected results:
• Improving the reliability of power supply;
• Reducing damage from accidental equipment failure;
• Reducing damage from the undersupply of electricity.
26. valuation of the electromagnetic compatibility of equipment
Main subjects:
• Performing measurements of electric and
magnetic fields in the electric power facilities.
• Creating a software package for the numerical
calculation by finite element distribution pattern of
the electromagnetic field in difficult conditions.
• Development of recommendations to ensure the
electromagnetic compatibility of equipment and
safety on existing and planned facilities.
Dissertation:
Bessolitsyn А.V. Field methods for determining the
electrical parameters of overhead power lines. Saint
Petersburg, 2010
Expected results
• Energy companies that operate high-voltage
equipment.
• Research and development organizations.
• High school.
27. • Creating a program for calculation of the permissible duration of
the overload of power transformers in the post-emergency
conditions;
• Determination of the possible relocation of 110 kV branch of
JSC "DRSC" "Khabarovsk EN" in the load unbalance mode;
Achieved results
• Study the conditions of the safety of personnel working on the
disabled 35-110-220 kV overhead line under the induced
voltage;
• Development and production of experimental design
sample instrument for measuring the spreading resistance
current grounding device supports 110 kV without disconnecting
the overhead ground wire
28. Main publications
Year Authors Name Output
2011 Bessolitsyn А.V.,
Golgovskykh А.V.,
Novoselova О.А.,
Khoroshinina Е.N.
Calculation of the electric field near the stranded wires Mechanization and Electrification of Agriculture. 2011.
№3
2010 Bessolitsyn А.V.,
Popov М.G.,
Khoroshinina Е.N.
Using three-dimensional numerical calculation of electrostatic
fields for the self and mutual capacitances of wires overhead line
Scientific and technical sheets of the St. Petersburg State
Polytechnic University. 2010. 2.
2010 Bessolitsyn А.V.,
Popov М.G.,
Novoselova О.А.
Development of methodology for the numerical calculation of the
longitudinal parameters of the air lines on the basis of three-
dimensional boundary-value problem
Scientific and technical sheets of the St. Petersburg State
Polytechnic University. 2010. 2
2008 Golgovskykh А.V. Diagnosis of rods cage rotor induction motor. Mechanization and Electrification of Agriculture, 2008. №
4. pp.26-27.
2008 Petrov N.V. Vibrational stability of the system voltage control group in the
distribution of reactive power between generators of electric
station.
Mechanization and Electrification of Agriculture, 2008. №
4. pp.18-19.
2008 Popov V.A.,
Bessolitsyn А.V.
Error in the calculation of mutual induction between the wires
overhead lines.
Mechanization and Electrification of Agriculture, 2008. №
4. pp.14-16.
2008 Popov V.A.,
Bessolitsyn А.V.,
Кalinina Е.А.
Calculation of resistance of steel-aluminum wires with a single
aluminum wire helix.
Mechanization and Electrification of Agriculture, 2008. №
4. pp.16-17.
2008 Popov V.A.,
Мedov R.V.,
Bessolitsyn А.V.
The measurement and calculation of the induced voltage on the
disconnected line 500 kV
Mechanization and Electrification of Agriculture, 2008. №
4. pp.27-28.
2008 Repkin N.G.,
Аraslanova I.V.
Neural network technology in predicting energy consumption. Mechanization and Electrification of Agriculture, 2008. №
4. pp.12-13.
2008 Barg I.G.,
Bessolitsyn А.V.
About the safety of personnel working on the disabled 35-220 kV
under the induced voltage
Energetic, 2008. №5. pp. 23-27.
29. JSC "IDGC of Center and Volga Region"
JSC "Company ORGRES"
JSC "Far-Eastern Distribution Company"
Main partners
Saint-Petersburg State Polytechnic University
30. Department of electrical engineering and
electronics
Head of the Department – Dr., Prof.
Кrasnykh Аlexander Аnatolyevich
ELECTRICAL ENGINEERING
Future research directions
and cooperation in the field of:
- ozonation equipment;
- electrical safety devices electronic control hazards at the power.
E-mail: kaf_eie@vyatsu.ru
www.ebp.ru
Ph.: +7 (8332)358657
31. Development of electronic control of electrical safety
devices hazards at the power
• For the last period on the basis of material
obtained in the course of research, a
whole range of electronic devices.
• On the part of the development, after their
trial operation in electric power utilities,
testing, including and in the organs of the
State Standard of the Russian Federation,
there are certificates.
33. Medical ozone generators
• The development allows to implement ozone
therapy in the prevention and treatment of
many diseases, including infectious ones, and
in the beauty industry. Developments in the
field of ozone therapy have been conducting in
the Vyatka State University since 1973. Several
medical ozone generators prototypes were
created already. Medical ozone generator can
generate ozone with a given concentration.
• Project phase : prototype is done
• Required funding : 50000 euro
• Items of expenditure: production licensing,
start of production.
• Eventual result: Medical ozone generators
manufacturing production.
• Payback period: 2 years.
34. Department of electrical machinery and devices
Head of the Department - PhD,
Assoc.Prof.,
Honored Worker of Higher Education,
Izotov Аnatoly Мikhaylovich
E-mail: izotov@vyatsu.ru, kaf_ema_vgu@bk.ru
Ph.: +7 (8332) 530473
Future research directions and work together to
improve the reliability of systems moving current
collector in electrical machines,
as well as in the design of
asynchronous motors for control
of electric drives
35. ● Increased switching reliability of collector cars AC and DC through the use of
nanotechnology
Head of scientific direction –
А.I. Izotov
● Research and design of induction motors for frequency-controlled electric
energy
Head of scientific direction –
V.Ya. Bespalov
Areas of research
36. Increased switching reliability of collector cars AC and DC
through the use of nanotechnology
Research work subject:
Increased life and reliability of brush-collector assemblies and systems of
electric cars rolling current collection of AC and DC.
Research tasks:
- development of techniques aiming politurnyh nanofilms
on the collectors and slip rings electrical machinery DC
and AC and nanofilms by using lubricating brushes on the
basis of molybdenum disulphide.
- development of technology in industrial production of
lubricating brushes.
37. 1. Izotov А.I., Маmaev G.А., Bespalov V.Ya., Nikulin S.V., Тimoshenko V.N. /
Improvement of characteristics of electrical machines by using lubricants brushes,
made on the basis of molybdenum disulphide / Electrical engineering, № 6, 2007.
2. Izotov A.I., Mamayev G.A., Bespalov V.Ya., Legotin A.B., Timoshenko V.N. / Wear
and tear reducing of carbon brushes of hermetically sealed electric machines /
Mechanization and Electrification of Agriculture № 4, 2008, pp. 24-26.
3. Izotov A.I., Bespalov V.Ya., Mamayev G.A., Shabardin V.A, Nikulin S.V. / The use of
lubricants brushes to increase of durability of collectors of electrical machines /
Mechanization and Electrification of Agriculture № 4, 2008, pp. 19-21
Main publications
38. 4. Izotov A.I., Mamayev G.A., Nikulin S.V., Timoshenko V.N. / Wear and tear reducing
of brushes of aircraft generator / Electricity, № 11, 2012, pp.60-62.
5. Patent / The collector AC electric machine / Izotov А.I.; registered 10.01.2007.
6. Patent / The brushes collector assembly of AC collector electric machine / Izotov А.I.,
Mamaev G.А., Shabardin V.А., Тimoshenko V.N., Novikov L.I, registered 27.10.2007.
7. Patent / The brushes collector assembly / Mamaev G.А Shabardin V.А., Izotov S.А.,
Nikulin S.V., Тimoshenko V.N., registered 10.02.2010.
Main publications
39. Subject:
Creating methods of optimal design and management for special induction
motors operating in the frequency-controlled motor drives
Research and design of induction motors for frequency-controlled
electric energy
Research tasks :
- Creation of mathematical models for the
calculation of static and dynamic modes of
induction motors.
- Development of methodology for optimal
design of special induction motors with high
power conditions.
- Development of algorithms and structures of
the optimal management of special induction
motors АД.
Executives - V.Ya. Bespalov,
PhD, Assoc.Prof.,
Alexander Vyacheslavovich Shestakov
E-mail: shestakov@vyatsu.ru, AlexVS1975@yandex.ru
Ph.: +7 (8332) 530473
40. The technique and software for the calculation of performance and
energy was performed for frequency-controlled induction motors, as well
as a program that allows you to simulate the dynamic conditions for
frequency-controlled induction motors.
Achieved results
41. The results of research should be a method of optimal design and management for
special frequency-controlled induction motors.
The introduction of this technique will significantly reduce the cost of designing and
operating costs of frequency-controlled induction motors which have the ability to
optimally manage the flow of electricity, which plays an important role in energy
conservation.
The opportunity to become the basis for a small business
The organization of consulting services to various companies for choosing
frequency-controlled induction motor drives.
Development and implementation of software for the design, testing and
modeling of asynchronous motors for inverter-driven motor.
Expected results
42. 1. Bespalov V.Ya., Maksimkin V.L., Antonenkov A.V. / Application of artificial neural networks to
research the asynchronous motor under a stochastic load / “Electromechanics”, № 1, 2008,
pp. 57-59.
2. Bespalov V.Ya., Kachalina Ye.V. / Comparative characteristics of asynchronous motors with
three-phase and two-phase windings for frequency-controlled electric drive / Electricity, 2010,
№ 7 – pp. 45-48.
3. Shestakov A.V. / Mathematical model of performance data of asynchronous motors with
frequency control / Electrical engineering, – №2, 2011. – pp. 23-29.
4. Certificate of state. registration of computer software № 201161490 / Electronic stand
simulator “Analysis of three-phase induction motor” / Shestakov A.V., Maksimov V.V., registered
22.06.2011.
5. Shestakov A.V., Koublikov A.N. / Parameters optimization of the frequency operated
asynchronous motor by methods of experiment planning / Electronic scientific journal
Advanced Science №1, 2012. pp. 55 – 72. http://www.vyatsu.ru/uploads/file/1301/1_red.pdf
Main publications
43. - JSC «Electroprivod» (Kirov)
- JSC«Aerosila» (Stupino)
Main partners
- Mamaev Gennadiy Aleksandrovich – General manager
JSC "Electric Machine Plant LEPSE“, PhD;
- Starkov Yuriy Alekseevich – deputy technical Director
JSC "Electric Machine Plant LEPSE“;
- Bespalov Viktor Yakovlevich – Vice-President of the Academy of Electrical Science of
the Russian Federation, Dr., Professor of the Department of Electromechanics in
Moscow Power Engineering Institute;
44. Department of Thermal Engineering and Hydraulics
Head of the Department – Dr., Professor,
Efros Evgeny Isaakovich
• development of methods and carrying out industrial research of power equipment in
variable modes;
• development on the basis of the newly acquired knowledge of mathematical models of
power plants to optimize their performance in a variable modes;
• theoretical study of the influence of various factors on the operational efficiency of the
power plants;
• development and supervision of the implementation of the technical proposals on the
modernization of the main and auxiliary power equipment, optimization of its
performance.
THERMAL POWER ENGINEERING
45. Department of Physics
Head of the Department - PhD,
Assoc.Proff.,
Grebenshchikov Leonid Timofeevich
Future research directions
and cooperation in the field of fuel combustion
E-mail: grebenshikov@vyatsu.ru, kaf_fizika@vyatsu.ru
Ph.: +7 (8332)350133
46. Thermal radiation in engines and power plants
During the studies were organized technology and developed methods of computer
simulation for the integrated study of radiation characteristics and emission
characteristics of combustion products for power plants, rocket motors and internal
combustion engines.
Head – Dr.., Professor
Кuzmin Vladimir Аlekseevich
E-mail: kaf_fizika@vyatsu.ru
Ph.: +7 (8332)350133
47. Thermal radiation in rocket engines
СоплоКамера сгорания
Срез
сопла
Tк
L
Tк
Tк.ст.
Tк.ст.
Ядро
Tс
L
Распределение
температур в
камере сгорания
Исследуемый
объем
Исследуемый
объем
Fig. 6 - Diagram of a high-
Installation - SRM (combustion chamber
and nozzle cut)
Project: "Study of the thermal radiation in
model engines "
Objectives:
1) study of the spectral
composition of the radiation model engines;
2) increasing the accuracy of the calculation of the
spectral and integral characteristics of radiation
model engines.
Expected results :
• data bank on dispersion, optical properties and radiation characteristics of the
combustion products;
• creation of a method to calculate the spectral emission characteristics of the
combustion products of model engines;
• study the influence of the gas and condensed phases on the emission characteristics
of heterogeneous combustion engine model;
• influence of initial parameters on the accuracy of the calculation of the spectral and
integral characteristics of radiation.