线控制动系统时间冗余执行的实验评价

J. Aidemark, J. Vinter, P. Folkesson, J. Karlsson
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引用次数: 30

摘要

本文提出了一种利用时序误差掩蔽来容忍暂态故障的线控制动应用的实验评估方法。一个特别设计的实时内核通过三倍的时间冗余执行和投票来掩盖错误,它在一个故障停止计算机节点上执行应用程序。目标是通过在计算机节点级别屏蔽错误来减少节点故障的数量。实时内核总是执行应用程序两次以检测错误,并确保在没有足够的cpu时间用于第三次执行和投票时发生故障停止故障。故障注入实验表明,与执行无时间冗余的线控制动任务相比,时间错误掩蔽将故障停止次数减少了42%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental evaluation of time-redundant execution for a brake-by-wire application
This paper presents an experimental evaluation of a brake-by-wire application that tolerates transient faults by temporal error masking. A specially designed real-time kernel that masks errors by triple time-redundant execution and voting executes the application on a fail-stop computer node. The objective is to reduce the number of node failures by masking errors at the computer node level. The real-time kernel always executes the application twice to detect errors, and ensures that a fail-stop failure occurs if there is not enough CPU-time available for a third execution and voting. Fault injection experiments show that temporal error masking reduced the number of fail-stop failures by 42% compared to executing the brake-by-wire task without time redundancy.
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