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Supervisory Control of Discrete-Event Systems in an Asynchronous Setting

机译:异步设置中离散事件系统的监控

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In conventional supervisory control theory, a plant and supervisor are supposed to work synchronously such that enabling an event by the supervisor, execution of it in the plant, and observation of the executed event by the supervisor all occur at once. Therefore, these occurrences are all captured by means of a single event. However, when a supervisor synthesized from conventional supervisory control theory is implemented in real life, it will face problems since exact synchronization can hardly happen in practice due to delayed communications. In this paper, we propose a synthesis technique to achieve a supervisor that does not face the problems caused by inexact synchronization. For this purpose, we first introduce an asynchronous setting in which enablement, execution, and observation of an event do not occur simultaneously but with some delay. We present a model representing the behavior of the plant in the asynchronous setting which we call the asynchronous plant. For the asynchronous plant, we present an algorithm synthesizing an asynchronous supervisor which satisfies (asynchronous) controllability and nonblockingness.
机译:在传统的监督控制理论中,植物和监督员应该同步地工作,使得监督员能够在工厂中执行事件,并通过监督员观察执行的执行事件。因此,这些事件全部通过单个事件捕获。然而,当从传统监督控制理论中合成的主管在现实生活中实施时,它将面临问题,因为由于通信延迟而在实践中很难发生确切同步。在本文中,我们提出了一种合成技术,实现了不面临不精确引起的问题的主管。为此目的,我们首先引入异步设置,其中启用,执行和观察事件不会同时发生,而是延迟。我们提出了一个模型,代表了我们称之为异步植物的异步设置中工厂的行为。对于异步工厂,我们介绍了一种算法,该算法合成了一种满足(异步)可控性和非阻塞性的异步监控器。

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