Bridging the Pragmatic Gaps for Mixed-Criticality Systems in the Automotive Industry

Zhe Jiang, Shuai Zhao*, Ran Wei*, Dawei Yang, Richard Paterson, Nan Guan, Yan Zhuang, Neil C. Audsly

*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

19 Citations (Scopus)

Abstract

An increasingly important trend in the design of safety-critical systems is the integration of components with different levels of criticality onto a common hardware platform. Mixed-Criticality Systems (MCSs) have been well researched in academia, but can be difficult to implement in industrial scenarios as the theoretical models underpinning the research do not sufficiently consider industrial safety practice and safety standards. In this paper, we make the first attempt towards the implementation of the MCS theoretical model in industrial settings. To this end, we identify the pragmatic gaps between theory and practice, and then propose a generic industrial MCS architecture, termed P-MCS (Practical-MCS). P-MCS is built upon the conventional theoretical MCS model with additional considerations of industrial safety requirements: 1) run-time safety analysis, determining preserved applications in each system mode; 2) correct partitioning and isolation of different critical elements. We introduce three implementing methods for P-MCS. Corresponding to the new system architecture, we present a theoretical model and schedulability analysis (with consideration of shared resources) to ensure system predictability. Finally, we evaluate and demonstrate P-MCS in terms of system schedulability, overheads, throughput and predictability, along with a real-world case study. As shown in the evaluation, the considerations of industrial requirements lead to extra overheads and performance reduction in P-MCS. Such weaknesses can be considerably mitigated by hardware assistance and acceleration.
Original languageEnglish
Pages (from-to)1116-1129
JournalIEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems
Volume41
Issue number4
Online published26 Apr 2021
DOIs
Publication statusPublished - Apr 2022

Research Keywords

  • Automotive engineering
  • Hardware/Software Co-design
  • ISO Standards
  • Mixed-Criticality System (MCS)
  • Pragmatics
  • Safety
  • Safety-Critical Systems
  • Standards
  • Switches
  • System Architecture
  • Task analysis

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