离散事件系统的故障恢复

A. Saboori, S. Zad
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引用次数: 24

摘要

本文研究了基于离散事件模型的故障恢复过程的综合。假设存在一种诊断系统,能够以有限的延迟检测和隔离故障。因此,作为被控系统的设备与诊断系统的组合将具有正常、暂态和恢复三种模式。最初,工厂和被控制的系统都处于正常模式。一旦电站发生故障,系统进入暂态模式。诊断系统诊断出故障后,系统进入恢复模式。我们研究了一个非阻塞监督器的设计,以在所有三种模式下强制执行系统的设计规范。首先将该问题转化为部分观测下的等效鲁棒无阻塞监督控制问题,然后(利用我们之前关于鲁棒控制的结果)求解得到的鲁棒控制问题,从而求解故障恢复问题。得到了故障恢复问题解存在的一组充分必要条件
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault recovery in discrete event systems
In this paper, we study the synthesis of fault recovery procedures using discrete-event models. It is assumed that a diagnosis system is available that detects and isolates the faults with a bounded delay. Thus, the combination of the plant and the diagnosis system, as the system to be controlled, will have three modes: normal, transient and recovery. Initially, the plant and thus the system to be controlled, are in the normal mode. Once a fault occurs in the plant, the system enters the transient mode. After the fault is diagnosed by the diagnosis system, the system enters the recovery mode. We study the design of a nonblocking supervisor to enforce the design specifications of the system in all three modes. The solution is obtained by first transforming the problem into an equivalent robust nonblocking supervisory control problem under partial observation, and then (using our previous results on robust control) solving the resulting robust control problem and thus the fault recovery problem. As a result, we obtain a set of necessary and sufficient conditions for the existence of a solution for the fault recovery problem
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