DocumentCode
128951
Title
D2Cyber: A design automation tool for dependable cybercars
Author
Munir, Achmad ; Koushanfar, Farinaz
Author_Institution
Dept. of Electr. & Comput. Eng., Rice Univ., Houston, TX, USA
fYear
2014
fDate
24-28 March 2014
Firstpage
1
Lastpage
4
Abstract
Next generation of automobiles (also known as cybercars) will increasingly incorporate electronic control units (ECUs) to implement various safety-critical functions such as x-by-wire (e.g., steer-by-wire (SBW), brake-by-wire). ISO 26262 specifies automotive safety integrity levels (ASILs) to signify the criticality associated with a function. Meeting a design´s ASIL requirements at a minimum additional cost is a major challenge in cybercar design. In this paper, we propose D2Cyber - a design automation tool for cybercars that facilitates designers in selecting dependable designs by providing built-in models, easy to specify inputs, and easy to interpret outputs. D2Cyber considers the effects of temperature, electronics quality grade, and design lifetime in cybercar´s design space exploration for determining a cost-effective solution and also advises on the attainable ASIL from a given design. We elaborate Markov models that form the basis of D2Cyber using SBW as a case study. We further provide evaluation insights obtained from D2Cyber.
Keywords
ISO standards; Markov processes; automobiles; electronic design automation; mobile robots; production engineering computing; road safety; ASIL; D2Cyber; ISO 26262 standard; Markov models; SBW; automobiles; automotive safety integrity levels; cost-effective solution; cybercar design space exploration; design automation tool; electronic control units; electronics quality grade; safety-critical functions; Automotive engineering; FAA; Markov processes; Redundancy; Reliability engineering; Wheels;
fLanguage
English
Publisher
ieee
Conference_Titel
Design, Automation and Test in Europe Conference and Exhibition (DATE), 2014
Conference_Location
Dresden
Type
conf
DOI
10.7873/DATE.2014.071
Filename
6800272
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