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首页> 外文期刊>IEEE Transactions on Automatic Control >A Uniform Approach for Synthesizing Property-Enforcing Supervisors for Partially-Observed Discrete-Event Systems
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A Uniform Approach for Synthesizing Property-Enforcing Supervisors for Partially-Observed Discrete-Event Systems

机译:一种用于部分观测离散事件系统的属性执行主管的统一方法

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摘要

The problem under consideration in this paper is that of enforcement by supervisory control of a given property on a partially-observed discrete-event system. We present a general methodology that is applicable to a large class of properties previously studied (individually) in the literature. These properties include, but are not restricted to, safety, diagnosability, opacity, detectability, anonymity and attractability. When the given system does not satisfy the considered property, the objective is to synthesize a supervisor that restricts the system's behavior and provably enforces the given property; moreover, it is required that this supervisor be maximally permissive. We consider the general case where the system's events are partitioned into observable and unobservable events, and controllable and uncontrollable events, and we do not make any assumptions about these two partitions; in particular, we do not assume that all controllable events are observable. Our uniform approach first maps the considered property to a suitably-defined information state for the partially-observed system and then develops a supervisor synthesis methodology based on a finite bipartite transition system that embeds all reachable information states and all admissible supervisory control strategies. This transition system is called the All Enforcement Structure (or AES). We present an algorithm for the construction of the AES and discuss its properties. Then we use the AES to develop a synthesis algorithm that constructs a supervisor that is provably property enforcing and maximally permissive. We illustrate the application of our uniform approach to the enforcement of the above-mentioned properties.
机译:本文考虑的问题是在部分观察到的离散事件系统上通过对给定属性的监督控制来执行。我们提供了一种适用于文献中以前(单独)研究过的一大类性质的通用方法。这些属性包括但不限于安全性,可诊断性,不透明性,可检测性,匿名性和吸引力。当给定系统不满足所考虑的属性时,目标是合成限制该系统行为并可证明地强制执行给定属性的主管。此外,要求该主管最大程度地允许。我们考虑将系统事件分为可观察和不可观察事件以及可控制和不可控制事件的一般情况,并且我们不对这两个分区做任何假设。特别是,我们不假定所有可控事件都是可观察到的。我们的统一方法首先将考虑的属性映射到部分观察到的系统的适当定义的信息状态,然后基于有限的双向转换系统开发监督程序综合方法,该方法将所有可到达的信息状态和所有可接受的监督控制策略嵌入其中。此过渡系统称为“所有执行结构”(或AES)。我们提出了一种用于AES构建的算法,并讨论了其特性。然后,我们使用AES来开发一种综合算法,该算法构造可证明是强制执行的且最大允许的监督器。我们说明了统一方法在上述属性实施中的应用。

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