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Model matching and fault-tolerant control of switched asynchronous sequential machines with transient faults

机译:具有暂态故障的开关异步顺序机的模型匹配和容错控制

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Switched asynchronous sequential machines (ASMs) are endowed with inherent fault-tolerance capability. This study presents model matching and fault-tolerant control of switched ASMs based on corrective control theory. The objective is to design a corrective controller that matches the stable-state behaviour of the closed-loop system to that of a reference model while overcoming all transient faults infiltrating into the machine. In particular, the proposed control scheme can invalidate not only transient faults causing unauthorised state transitions in single submachine, but also those ones invoking unwanted switching operations between submachines. The existence condition and design procedure for a fault-tolerant corrective controller is addressed in the framework of corrective control. For experimental verification, the proposed scheme is applied to the read-only memory controller for on-board computers implemented on a field programmable gate array system.
机译:交换式异步顺序机(ASM)具有固有的容错能力。基于修正控制理论,本文提出了开关ASM的模型匹配和容错控制。目的是设计一种校正控制器,以使闭环系统的稳态行为与参考模型相匹配,同时克服渗透到机器中的所有瞬态故障。特别地,所提出的控制方案不仅可使在单个子机中引起未经授权的状态转变的瞬态故障无效,而且可使那些在子机之间进行不必要的切换操作的故障无效。在校正控制的框架下,提出了一种容错校正控制器的存在条件和设计过程。为了进行实验验证,将所提出的方案应用于在现场可编程门阵列系统上实现的车载计算机的只读存储控制器。

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