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On Approximate Diagnosability of Metric Systems

机译:关于度量系统的近似可诊断性

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The increasing complexity in nowadays engineered systems requires great attention to safety hazards and occurrence of faults, which must be readily detected to possibly restore nominal behavior of the system. The notion of diagnosability plays a key role in this regard, since it corresponds to the possibility of detecting within a finite delay if a fault, or in general a hazardous situation, did occur. In this paper the notion of approximate diagnosability is introduced and characterized for the general class of metric systems, that are typically used in the research community working on hybrid systems to study complex heterogeneous processes in cyber-physical systems. The notion of approximate diagnosability proposed captures the possibility of detecting faults on the basis of measurements corrupted by errors, always introduced by non-ideal sensors in a real environment. A characterization of approximate diagnosability in a set membership framework is provided and the computational complexity of the proposed algorithms analyzed. Then, relations are established between approximate diagnosability of a given metric system and approximate diagnosability of a system that approximately simulates the given one. Application of the proposed results to the study of approximate diagnosability for nonlinear systems, presenting an infinite number of states and of inputs, is finally discussed.
机译:在当今的工程系统中,日益增加的复杂性要求高度重视安全隐患和故障的发生,必须立即检测到这些故障,以可能恢复系统的正常性能。在这方面,可诊断性概念起着关键作用,因为它对应于在有限的延迟内检测出是否发生了故障或一般而言是危险情况的可能性。在本文中,引入了针对一般度量系统类别的近似可诊断性的概念,并对其进行了表征,该度量系统通常用于研究混合系统的研究团体,以研究网络物理系统中的复杂异构过程。提出的近似可诊断性的概念捕获了基于错误破坏的测量结果来检测故障的可能性,这些错误总是由真实环境中的非理想传感器引入的。提供了在组成员资格框架中的近似可诊断性的表征,并分析了所提出算法的计算复杂性。然后,在给定度量系统的近似可诊断性和近似模拟给定度量的系统的近似可诊断性之间建立关系。最后讨论了提出的结果在非线性系统的近似可诊断性研究中的应用,该状态表示了无限数量的状态和输入。

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  • 会议地点 Trento(IT);Vienna(AU)
  • 作者单位

    Center of Excellence DEWS, University of L'Aquila, Via G. Gronchi, 67100 L'Aquila, Italy;

    Center of Excellence DEWS, University of L'Aquila, Via G. Gronchi, 67100 L'Aquila, Italy;

    Center of Excellence DEWS, University of L'Aquila, Via G. Gronchi, 67100 L'Aquila, Italy;

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