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Optimal Constructions for Active Diagnosis

机译:活动诊断的最佳结构

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摘要

The task of diagnosis consists in detecting, without ambiguity, occurrence of faults in a partially observed system. Depending on the degree of observability, a discrete event system may be dia-gnosable or not. Active diagnosis aims at controlling the system in order to make it diagnosable. Solutions have already been proposed for the active diagnosis problem, but their complexity remains to be improved. We solve here the active diagnosability decision problem and the active diagnoser synthesis problem, proving that (1) our procedures are optimal w.r.t. to computational complexity, and (2) the memory required for the active diagnoser produced by the synthesis is minimal. We then focus on the delay between the occurrence of a fault and its detection by the diagnoser. We construct a memory-optimal diagnoser whose delay is at most twice the minimal delay, whereas the memory required for a diagnoser with optimal delay may be highly greater.
机译:诊断的任务包括在不模糊的情况下检测部分观察到的系统中的故障。根据可观察性的程度,离散事件系统可以是可染色的。积极诊断旨在控制系统,以使其诊断。已经提出了解决方案的积极诊断问题,但它们的复杂性仍有待改善。我们解决了主动诊断性决策问题和主动诊断综合问题,证明了(1)我们的程序是最佳的W.R.T.计算复杂性,并且(2)合成产生的有源诊断所需的存储器是最小的。然后,我们专注于发生故障的发生与诊断器的检测之间的延迟。我们构建一个内存最佳诊断,其延迟最多是最小延迟的两倍,而最佳延迟的诊断器所需的存储器可能高度大。

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