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About on-line functionally untestable fault identification in microprocessor cores for safety-critical applications

机译:关于用于安全关键型应用的微处理器内核中的在线功能不可测试的故障识别

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When microprocessor cores are used in safety-critical applications, in-field test must be performed to reach the target reliability figures. In turns, the in-field test must be organized so that it achieves a sufficient fault coverage. The fault list to be considered for computing the fault coverage should only include testable faults, i.e., faults which may cause a failure in the operating conditions. Hence, single permanent faults that in the operating conditions cannot be excited, or do not propagate to any output, or both, should be removed from the list. These faults, called on-line functionally untestable faults, require a significant effort to be identified. The contribution of this paper is twofold. From one side, it reports experiments, showing that in typical embedded safety-critical systems their number is often far from being negligible, and depends on many parameters, including the application code run by the processor. Secondly, it provides a semi-automated approach to their identification. Experimental results on a representative microprocessor are reported.
机译:当微处理器内核用于安全关键型应用中时,必须进行现场测试以达到目标可靠性指标。反过来,必须组织现场测试,以实现足够的故障覆盖率。计算故障覆盖率时要考虑的故障列表应仅包括可测试的故障,即可能导致运行条件发生故障的故障。因此,应从列表中删除单个永久性故障,这些永久性故障在运行条件下不会被激发,或者不会传播到任何输出,或者两者都不能消除。这些故障称为在线功能无法测试的故障,需要花费大量精力才能确定。本文的贡献是双重的。一方面,它报告了实验,表明在典型的嵌入式安全关键型系统中,其数量通常远远不能忽略,并且取决于许多参数,包括处理器运行的应用程序代码。其次,它提供了一种半自动识别方法。报告了在代表性微处理器上的实验结果。

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