References

  1. Sanket Amberkar, Barbara J. Czerny, Joseph G. D'Ambrosio, Jon D. Demerly & Brian T. Murray (2001): A Comprehensive Hazard Analysis Technique for Safety-Critical Automotive Systems. In: SAE Technical Paper. SAE International, doi:10.4271/2001-01-0674.
  2. Peter Bergmiller (2013): Design and safety analysis of a drive-by-wire vehicle, first edition, chapter 8, pp. 147–202. Springer, doi:10.1007/978-3-642-36455-6_8.
  3. Sébastien Christiaens, Juergen Ogrzewalla & Stefan Pischinger (2012): Functional Safety for Hybrid and Electric Vehicles. In: SAE Technical Paper. SAE International, doi:10.4271/2012-01-0032.
  4. International Electrotechnical Commission (2015): Functional Safety. http://www.iec.ch/functionalsafety/explained/. [Online; accessed 15-November-2015].
  5. Lenny Delligatti (2013): State Machine Diagrams, first edition. Addison-Wesley Professional.
  6. Sebastian Geyer (2013): Maneuver-based vehicle guidance based on the Conduct-by-Wire principle, first edition, chapter 6, pp. 111–132. Springer.
  7. Ibrahim Habli, Ireri Ibarra, Roger S. Rivett & Tim Kelly (2010): Model-Based Assurance for Justifying Automotive Functional Safety. In: SAE Technical Paper. SAE International, doi:10.4271/2010-01-0209.
  8. SAE International (2015): SAE Standard – J2980 - Considerations for ISO 26262 ASIL Hazard Classification.
  9. ISO (2011): ISO 26262–Road vehicles-Functional safety.
  10. S Manoj Kannan, Yanja Dajsuren, Yaping Luo & Ion Barosan (2015): Analysis of ISO 26262 Compliant Techniques for the Automotive Domain. In: Proceedings of the International Workshop on Modelling in Automotive Software Engineering co-located with ACM/IEEE 18th International Conference on Model Driven Engineering Languages and Systems (MoDELS 2015), Ottawa, Canada Vol. 1487. CEUR-WS.org. Available at http://ceur-ws.org/Vol-1487.
  11. Soeren Kemmann & Mario Trapp (2011): SAHARA -A Systematic Approach for Hazard Analysis and Risk Assessment. In: SAE Technical Paper. SAE International, doi:10.4271/2011-01-1003.
  12. Gokul Krithivasan, William Taylor & Jody Nelson (2015): Developing Functional Safety Requirements using Process Model Variables. In: SAE Technical Paper. SAE International, doi:10.4271/2015-01-0275.
  13. Felix Lotz (2013): System architectures for automated vehicle guidance concepts, first edition, chapter 3, pp. 39–61. Springer.
  14. Bart Oosthoek, Steven Bouwmeister & Mark Soons (2015): Functional Safety for Commercial Vehicles and Mobile Machinery Using Systems Engineering.
  15. Ludovic Pintard, Michel Leeman, Abdelillah Ymlahi-Ouazzani, Jean-Charles Fabre, Karama Kanoun & Matthieu Roy (2015): Using Fault Injection to Verify an AUTOSAR Application According to the ISO 26262. In: SAE Technical Paper. SAE International, doi:10.4271/2015-01-0272.
  16. Rakesh Rana, Miroslaw Staron, Christian Berger, Jörgen Hansson, Martin Nilsson & Fredrik Törner (2013): Increasing Efficiency of ISO 26262 Verification and Validation by Combining Fault Injection and Mutation Testing with Model Based Development. In: 8th International Joint Conference on Software Technologies (ICSOFT), Reykjavík, Iceland, July 2013, pp. 251–257.
  17. Darren Sexton, Antonio Priore & John Botham (2014): Effective Functional Safety Concept Generation in the Context of ISO 26262. SAE International Passenger Cars Electronic and Electric Systems 7, pp. 95–102, doi:10.4271/2014-01-0207.
  18. Marion Suerken & Thomas Peikenkamp (2013): Model-based Application of ISO 26262: The Hazard Analysis and Risk Assessment. SAE International Passenger Cars Electronic and Electric Systems 6, pp. 114–125, doi:10.4271/2013-01-0184.
  19. David D. Ward, Roger S. Rivett & Peter H. Jesty (2007): A Generic Approach to Hazard Analysis for Programmable Automotive Systems. In: SAE Technical Paper. SAE International, doi:10.4271/2007-01-1620.

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