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