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Generic Detectability and Isolability of Topology Failures in Networked Linear Systems

机译:网络线性系统中拓扑故障的通用可检测和隔离性

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This article studies the possibility of detecting and isolating topology failures (including link and node failures) of a networked system from subsystem measurements, in which subsystems are of fixed high-order linear dynamics, and the exact interaction weights among them are unknown. We prove that in such a class of networked systems with the same network topologies, the detectability and isolability of a given topology failure (set) are generic properties, indicating that it is the network topology that dominates the property of being detectable or isolable for a failure (set). We first give algebraic conditions for detectability, and isolability of arbitrary parameter perturbations for a lumped plant and then derive graph-theoretical necessary and sufficient conditions for generic detectability and isolability of topology failures for the networked systems. On the basis of these results, we consider the problems of deploying the smallest set of sensors for generic detectability and isolability. We reduce the associated sensor placement problems to the hitting set problems, which can be effectively solved by greedy algorithms with guaranteed approximation performances.
机译:本文研究了从子系统测量中检测和隔离网络系统的拓扑故障(包括链路和节点故障)的可能性,其中子系统具有固定的高阶线性动态,并且它们之间的确切交互权重是未知的。我们证明,在具有相同网络拓扑的等类网络系统中,给定拓扑故障(SET)的可检测性和隔离性是通用属性,指示它是占据可检测或隔离的属性的网络拓扑失败(集)。首先,首先为集总植物进行任意参数扰动的可检测性,以及用于网络系统的通用可检测性和拓扑故障的无能性和充分条件的任意参数扰动的可检测性和可隔离条件。在这些结果的基础上,我们考虑为通用可检测性和隔离性部署最小传感器集的问题。我们将相关的传感器放置问题减少到击中集问题,可以通过贪婪算法有效解决,具有保证近似性能。

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