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Supervisory Control of Timed Discrete-Event Systems Subject to Communication Delays and Non-FIFO Observations

机译:受通信延迟和非FIFO观察的定时离散事件系统的监督控制

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Conventional supervisory control synthesis techniques are not adequate anymore when a network between the plant and the supervisor introduces communication delays. This paper presents a method to synthesize a networked supervisor handling delays in both observation and control channels. To deal with the problem of delayed observations, we propose an automaton modeling the behaviour of the plant observed by a supervisor through a network, called observed plant. In this automaton, events observed by a supervisor are delayed from those occurring in the plant. Moreover, since observation channels are considered not to have the first in first out (FIFO) characteristic, events may not be necessarily observed in the same order as they occurred within the plant. A safe, observable, controllable and nonblocking supervisor is synthesized for the observed plant by means of an adapted synthesis algorithm for timed discrete-event systems (TDES). By enabling the achieved supervisor to predict the effects of control delays, it will be further transformed to a networked supervisor. The networked supervisor makes decisions ahead of time to ensure that the commands will be applied on the right (plant) state.
机译:当工厂和主管之间的网络引入通信延迟时,常规的监视控制综合技术已不再足够。本文提出了一种在观察和控制通道中综合处理延迟的网络化管理者的方法。为了解决延迟观测的问题,我们提出了一种自动机,它可以对主管人员通过称为观测工厂的网络观测的工厂的行为进行建模。在这种自动机中,主管人员观察到的事件比工厂中发生的事件要延迟。此外,由于观察通道不具有先进先出(FIFO)特征,因此事件不一定按照与工厂中发生事件相同的顺序进行观察。通过适用于定时离散事件系统(TDES)的自适应合成算法,为观察到的植物合成了安全,可观察,可控制且无阻塞的监控器。通过使成功的主管能够预测控制延迟的影响,它将进一步转变为网络化的主管。网络化的主管可以提前做出决定,以确保将命令应用于正确的(工厂)状态。

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