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Safety Enhancement for Real-Time Parallel Applications in Distributed Automotive Embedded Systems: A Stable Stopping Approach

机译:分布式汽车嵌入式系统中实时并行应用的安全增强:稳定的停止方法

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摘要

In distributed automotive embedded systems, safety issues run through the entire life cycle, and safety mechanisms for error handling are desirable for risk control. This article focuses on safety enhancement (i.e., safety mechanisms for error handling) for a safety-critical automotive application within its deadline. A stable stopping approach used for safety enhancement for an automotive application is proposed based on the static recovery mechanism provided in ISO 26262. The Stable Stopping-based Safety Enhancement (SSSE) approach is proposed by combining known backward recovery, proposed forward recovery, and proposed forward-and-backward recovery through primary-backup repetition. The stable stopping (i.e., SSSE) approach is a convergence algorithm, which means that when the reliability value reaches a steady state and the algorithm can stop. Experimental results reveal that the exposure level defined in ISO 26262 drops from E3 to E1 after using SSSE, and such improvement enables a safety guarantee of higher level.
机译:在分布式汽车嵌入式系统中,安全问题通过整个生命周期运行,并且需要用于风险控​​制的错误处理安全机制。本文重点介绍了在其截止日期内的安全关键汽车应用程序的安全增强(即,误差处理的安全机制)。基于ISO 26262中提供的静态恢复机制,提出了一种用于汽车应用的安全增强的稳定停止方法。通过结合已知的向后恢复,提出的前进恢复和提出,提出了基于稳定的停止的安全增强(SSSE)方法通过初级备份重复向前恢复。稳定停止(即,SSSE)方法是收敛算法,这意味着当可靠性值达到稳定状态并且算法可以停止。实验结果表明,在使用SSSE后ISO 26262中定义的暴露水平从E3滴到E1,并且这种改进使得能够安全保证更高水平。

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