DocumentCode :
3276893
Title :
Development of safety process in model-based design platform for safety-critical systems
Author :
Yung-Yuan Chen ; Jing-Xiang Peng
Author_Institution :
Dept. of Electr. Eng., Nat. Taipei Univ., Taipei, Taiwan
fYear :
2013
fDate :
23-25 May 2013
Firstpage :
627
Lastpage :
630
Abstract :
The reliability and robustness of a safety-related system can be ensured by using international standards, such as ISO 26262, to develop and verify the functional safety of the system. This research proposes a safety validation and risk reduction (SVRR) process based on ISO 26262 safety standards for decreasing risk and validating safety in model-based design platform. The proposed safety process can be employed to identify the crucial components in the system, and the effects of such crucial components´ failures on the functional safety can be effectively mitigated through fault-tolerant mechanism protection. An emergency brake control algorithm and brake-by-wire system was developed through the SVRR process built in NI and dSPACE system design platform. Simulation-based fault injection campaigns were performed and the experimental results show the degree of severity of the components´ failures to the system and the robustness of the system. We then employ a fault-tolerant mechanism to protect the most vulnerable component to improve the system safety.
Keywords :
brakes; program verification; risk management; safety; safety-critical software; software fault tolerance; software reliability; software standards; ISO 26262 safety standards; NI system design platform; SVRR process; brake-by-wire system; component failures; dSPACE system design platform; emergency brake control algorithm; fault-tolerant mechanism; fault-tolerant mechanism protection; international standards; model-based design platform; safety process; safety validation and risk reduction process; safety-critical systems; safety-related system; Automobiles; Computer aided software engineering; Hazards; Robustness; Web pages; FMEA; ISO 26262; fault injection; model-based design platform; safety lifecycle; safety process;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Software Engineering and Service Science (ICSESS), 2013 4th IEEE International Conference on
Conference_Location :
Beijing
ISSN :
2327-0586
Print_ISBN :
978-1-4673-4997-0
Type :
conf
DOI :
10.1109/ICSESS.2013.6615386
Filename :
6615386
Link To Document :
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