Closed-loop Actuator-fault Detection and Isolation using Invariant Sets and Tubes

Feng Xu, V. Puig, C. Ocampo‐Martinez, F. Stoican, Sorin Olaru
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引用次数: 1

Abstract

Abstract This paper proposes a new actuator-fault detection and isolation (FDI) strategy for closed-loop discrete time-invariant systems by using invariant sets and tubes. In this approach, invariant sets are used for fault detection (FD) and the establishment of FDI conditions, while the tubes are generated for fault isolation (FI) at transient state. Comparing with the existing set-theoretic FDI techniques, the advantage of this approach consists in that it exhibits a balance between the conservativeness of FDI conditions, the fast FI response and the computational complexity. The effectiveness of the proposed technique is illustrated by a numerical example.
基于不变量集和管的闭环执行器故障检测与隔离
摘要针对闭环离散时不变系统,提出了一种基于不变量集和管道的执行器故障检测与隔离策略。在该方法中,不变量集用于故障检测(FD)和FDI条件的建立,而管道则用于暂态故障隔离(FI)。与现有的集合论FDI技术相比,该方法的优点在于它在FDI条件的保守性、快速的FI响应和计算复杂度之间取得了平衡。数值算例说明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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