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Course Detail

Course Name Automotive Systems Engineering and Safety
Course Code 26AL612
Program M. Tech. in Automotive Electronics
Semester 2
Credits 3
Campus Coimbatore

Syllabus

Unit 1

System Engineering – Introduction – Need of systems engineering Lifecycle – System Elements – Systemof systems Processes overview – Analytics Tools – Technical process details Optimize system architectures Requirements and Needs Analysis Process models V-model, agile and iterative models

Unit 2

Model based systems Engineering- Introduction Methodology, Digital thread – architecture models -implementation models – embedded software. Model Based development MBD Tools – Introduction to data flow and state flow modelling – Tool boxes for automotive control system development and simulationASPICE and AI-supported v/v.

Unit 3

Functional Safety Introduction – Overview of ISO26262: (Part 2 to part 9) – Safety lifecycle Conceptphase (part 3) System Phase (part 4) – Hardware development (part 5) – Software development (part 6) -Verification, Validation Traceability and certification in safety-critical systems MISRA C Automotive System, AI and Software Coding Safety Standards.

Text Books / References

References

  1. James Wen, “Data Driven System Engineering: Automotive ECU Development”, pp. 260, Ddse Consulting LLC, 2022.
  2. Andrea Leitner, Daniel Watzenig and Javier Ibanez-Guzman, “Validation and Verification of Automated Systems”, 1(11), pp. 320, Springer Nature Switzerland AG, 2020.
  3. John M. Borky & Thomas H. Bradley, “Effective Model-Based Systems Engineering”, 1(20), pp.779, Springer Cham, 2019.
  4. Markus Maurer & Hermann Winner, “Automotive Systems Engineering”, 1(8), pp. 268, Springer Berlin, Heidelberg, 2013.
  5. Arrichiello, Vincenzo. Introduction to Systems Engineering. CIISE, 2014.
  6. Bonjour, Eric. “Special Issue on System of Systems Engineering,” Wiley-Blackwell, 2019.
  7. David D. Waldenm “INCOSE Systems Engineering Handbook”, Wiley, 4th edition, 2015.
  8. INCOSE-UK. SERC, and IEEE-SYSC, “Guide to the Systems Engineering Body of Knowledge (SEBoK)”, Stevens Institute of Technology, ver. 2.10, 2024.

Objectives and Outcomes

Course Objectives :

  • To introduce topical concepts and elements in systems engineering.
  • To offer insights on systems engineering schemas and related software development.
  • To impart knowledge on prevalent safety standards in vehicular system development

Course Outcomes:

  • CO01: Ability to understand salient concepts in automotive systems engineering
  • CO02: Ability to analyze and process model-based systems engineering
  • CO03: Ability to design and implement data driven systems engineering
  • CO04: Ability to understand safety standards applied to vehicular system development

CO-PO Mapping

CO/PO PO1 PO2 PO3 PO4 PO5 PO6
CO01 3   2      
CO02 3   2   2  
CO03 3   2   2 3
CO04 3   2   2 2

Skills acquired: Concepts and tools deployed in design-for-safety of vehicular systems

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