Diagnosability Test for Timed Discrete-Event Systems

JiangJing Pan, S. Hashtrudi-Zad
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引用次数: 9

Abstract

In this paper, an algorithm with polynomial time-complexity is presented for testing failure diagnosability in (untimed) discrete-event systems in a state-based framework. Furthermore, an algorithm for testing failure diagnosability in timed discrete-event systems is provided. The test for timed discrete-event systems, in particular, first gathers and complies the information about the timing of events (represented in the timed transition graph of the timed system) in the transition-time function of a reduced model, and then uses this model to verify diagnosability. Sufficient conditions are obtained under which the transition-time sets can be represented as the union of a bounded number of intervals, and the test will have polynomial complexity. This new test, as shown using examples, may significantly reduce the computations of testing diagnosability, compared with other polynomial diagnosability tests (for untimed systems) adapted for timed systems
定时离散事件系统的可诊断性测试
在基于状态的框架下,提出了一种具有多项式时间复杂度的(非定时)离散事件系统故障可诊断性测试算法。在此基础上,提出了一种定时离散事件系统故障可诊断性测试算法。特别是对时间离散事件系统的测试,首先将事件的时间信息(用时间系统的时间过渡图表示)收集并遵从于简化模型的过渡时间函数中,然后使用该模型验证可诊断性。得到了过渡时间集可以表示为有限个区间的并的充分条件,且检验具有多项式复杂度。与适用于定时系统的其他多项式可诊断性测试(针对非定时系统)相比,这个新测试(如示例所示)可以显著减少测试可诊断性的计算量
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