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Decentralized Supervisory Control Of Fuzzy Discrete Event Systems

机译:模糊离散事件系统的分散监督控制

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In order to more effectively cope with the real-world problems of fuzziness and impreciseness, fuzzy discrete event systems (FDESs) were proposed by Lin and Ying. Qiu, and then, Cao and Ying independently developed supervisory control theory of FDESs. We note that the controllability of events in Qiu's work is fuzzy but the observability of events is crisp, and, the observability of events in Cao and Ying's work is also crisp although the controllability is not completely crisp. Motivated by the necessity to consider the situation that the events may be observed or controlled with some membership degrees in real-life world, in this work, both the observability and the controllability of events are considered to be fuzzy. As a continuation of the centralized supervisory control of FDESs proposed by Qiu and Liu, this paper investigates the decentralized supervisory control of FDESs in the more generic framework. In particular, on the basis of Qiu's work, we present a detailed computing approach to verify whether the controllability and co-observability conditions hold, and this method can decide the existence of the decentralized supervisors. Also, this computing method can be applied to check the existence of the decentralized supervisors in classical discrete event systems.
机译:为了更有效地应对模糊和不精确的现实问题,Lin和Ying提出了模糊离散事件系统(FDES)。邱,然后,曹和英独立开发了FDES的监督控制理论。我们注意到,邱先生作品中事件的可控性是模糊的,但事件的可观察性却是清晰的,而曹和英作品中事件的可观察性也很清晰,尽管可控性并不完全清晰。由于必须考虑在现实世界中可能以某种隶属度观察或控制事件的情况,因此在这项工作中,事件的可观察性和可控制性都被认为是模糊的。作为邱和刘提出的对FDES进行集中监管的延续,本文在更为通用的框架下研究了FDES的分散监管。特别是,根据邱的工作,我们提出了一种详细的计算方法来验证可控性和可共同观察性条件是否成立,并且这种方法可以决定分散监督者的存在。同样,该计算方法可以应用于检查经典离散事件系统中分散监督器的存在。

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