Course: Electronics of means of transport

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Course title Electronics of means of transport
Course code KEI/EDP
Organizational form of instruction Lecture + Tutorial
Level of course Master
Year of study not specified
Semester Winter
Number of ECTS credits 4
Language of instruction Czech, English
Status of course Compulsory
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Georgiev Vjačeslav, Doc. Dr. Ing.
  • Koucký Václav, Ing. CSc.
  • Hammerbauer Jiří, Doc. Ing. Ph.D.
  • Kosturik Kamil, Ing. Ph.D.
  • Košan Tomáš, Ing. Ph.D.
Course content
1. System concept of road vehicles (distribution of control units, topology of on-board network, drives, buses) 2. System concept of rolling stock (distribution of control units, topology, drives, buses, light/heavy traction) 3. System concept of air transport means 4. System concept of shipping means of transport 5. Diagnostics of means of transport I (What is diagnostics. Basic concepts. Generally applicable rules for diagnosing arbitrary systems. Test, test generation. Basic concepts in testing. Diagnostic coverage. Safe systems. Reliability versus safety. Redundant structures, impact on safety and reliability .) 6. Diagnostics of means of transport ?I. (OBD Basics. Protocol, Standard Connection. Hardware for Diagnostics. Error Codes. Advanced Troubleshooting.) 7. Buses in means of transport I (Explanation of the term bus, network topology, ISO/OSI model, bus access control 8. Buses in vehicles II (CANbus and its properties, add-on protocols (transport protocol, network management, LINbus, FlexRay, K-Line, Ethernet, EtherCAT, MVB - Multifunction Vehicle Bus, WTB - Wire Train Bus)) 9. Sensors in vehicles I (Definition of the term sensor, generation of sensors, intelligent sensors, metrological parameters of sensors. Temperature sensors, contact, non-contact measurements. Strain gauges, pressure, torque, static and dynamic weighing. 10. Sensory in vehicles II (Sensors of position, displacement, angle of rotation, tilt, measurement of speed, angular speed, acceleration. volume and mass flow meters - e.g. air weight, chemical sensors (e.g. Lambda.) 11. Vehicle on-board power supply network I (Batteries - lead-acid batteries, maintenance-free lead-acid batteries, Li-ion and Li-pol batteries, LiFePo4) 12. Vehicle on-board power supply network II (power consumers, power supply units of vehicle electronic equipment, intelligent power switches in automotive technology and their principles)

Learning activities and teaching methods
Laboratory work, Lecture
  • Contact hours - 52 hours per semester
  • Preparation for an examination (30-60) - 50 hours per semester
prerequisite
Knowledge
describe the basic properties and types of microcontrollers
explain the function of basic digital circuits
explain the behavior and function of basic analog circuits
Skills
design an analog electronic circuit
design a digital electronic circuit
create a simple program for a microcontroller
learning outcomes
Knowledge
describe the individual parts of the electronic equipment of means of transport
describe the basic properties of industrial buses
explain the functions of sensors used in vehicles
Skills
analyze communication via selected industrial buses
diagnose the fault using diagnostic tools
diagnose the fault using diagnostic tools
teaching methods
Knowledge
Lecture
Skills
Laboratory work
assessment methods
Knowledge
Oral exam
Skills
Oral exam
Recommended literature
  • ISO 11898 - Road vehicles - Controller area network (CAN). 2015.
  • texty v Courseware. .


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester