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首页> 外文期刊>Systems, Man, and Cybernetics: Systems, IEEE Transactions on >Framework for Optimal Fault-Tolerant Control Synthesis: Maximize Prefault While Minimize Post-Fault Behaviors
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Framework for Optimal Fault-Tolerant Control Synthesis: Maximize Prefault While Minimize Post-Fault Behaviors

机译:最佳容错控制综合的框架:最大化故障前的同时最小化故障后的行为

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摘要

In an earlier work, we introduced a framework for fault-tolerant supervisory control of discrete event systems and presented a necessary and sufficient condition for its existence. In this paper, we introduce the synthesis of an optimal fault-tolerant supervisory controller. Given a discrete event plant with both post-fault and prefault behaviors, an optimal fault-tolerant supervisor we synthesize enforces a set of behaviors in which: 1) a recovery is guaranteed within a bounded delay following any fau 2) all safety and nonblocking properties are satisfied; 3) the enforced set of prefault behaviors is maximized, and 4) a minimal set of post-fault behaviors is tolerated to achieve recovery in a minimal number of steps. An optimal solution requires a simultaneous maximization (of prefault behaviors) and minimization (of post-fault and prerecovery behaviors), which is quite novel. The optimal solution further minimizes the delay of recovery. The computation has complexity quadratic in the size of plant.
机译:在较早的工作中,我们介绍了离散事件系统的容错监督控制框架,并提出了其存在的充要条件。在本文中,我们介绍了一种最佳的容错监控控制器的综合。给定一个既具有故障后又具有故障前行为的离散事件工厂,我们综合的最佳容错管理程序将强制执行一组行为,其中:1)在任何故障之后的有限延迟内保证恢复; 2)满足所有安全性和非阻塞性; 3)最大限度地提高了强制执行的故障前行为,并且4)允许了最少的故障后行为,以最少的步骤实现了恢复。最佳解决方案需要同时最大化(故障前的行为)和最小化(故障后和恢复前的行为),这是很新颖的。最佳解决方案进一步减少了恢复延迟。该计算在植物大小上具有二次方的复杂度。

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