| Category | Scientific-professional |
| Scientific or art field | Energetska elektronika, mašine, pogoni i obnovljivi izvori električne energije |
| ECTS | 5 |
The aim of the course is development of knowledge in the field of hybrid vehicles and vehicles powered by electricity. Knowledge includes a brief history of development in this field, its current state and directions of future development. The focus of the subject is on the main electrical systems within the vehicle: the drive system and the power supply system (batteries), as well as the corresponding power converters and their control.
Students will be trained for a detailed understanding of theoretical bases and methods of designing electric and hybrid vehicles, with emphasis on characteristics, configurations, analysis, control strategies, modeling and simulations of the drive and the power supply systems. Students will be practically trained on the example of available electric vehicles within the laboratory, and through project tasks will participate in its advancement.
Introduction. A brief history and impact of vehicles on the environment. Basics of the drive system. Vehicle movement modeling: forces and motion dynamic equations. Power train tractive effort and vehicle speed. Vehicle power train and transmission characteristics. Vehicle performance: maximum speed, acceleration, braking. Internal combustion engines: parameters, efficiency, fuel consumption, performance characteristics. Configurations, characteristics and performance of electric vehicles. Torque characteristic of electrical motors. Hybrid electric vehicles. Configurations and concepts of the hybrid vehicle drive system. Serial, parallel, serial-parallel hybrid drive systems. Types of electrical motors in vehicles. DC motor drive and control concepts. Synchronous motor drive and control concepts. Overview of the power supply system for electric vehicles. Electric energy storage devices. Batteries. Fuel cells. Battery chargers. Power management in electric vehicles. Fundamentals of regenerative braking. Simulation of a pure electric vehicle and practical testing in the laboratory.
Lectures. Exercises. Laboratory exercises.
| Authors | Title | Year | Publisher | Language |
|---|---|---|---|---|
| 2012 | English | |||
| 2010 | English | |||
| 2010 | English |
| Course activity | Pre-examination | Obligations | Number of points |
|---|---|---|---|
| Project task | Yes | Yes | 30.00 |
| Written part of the exam - tasks and theory | No | Yes | 30.00 |
| Coloquium exam | No | Yes | 20.00 |
| Test | Yes | Yes | 20.00 |
Assoc. Prof. Marko Vekić
Associate Professor
Lectures
Assoc. Prof. Ivan Todorović
Associate Professor
Practical classes
Assoc. Prof. Ivan Todorović
Associate Professor
Laboratory classes
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© 2024. Faculty of Technical Sciences.