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A general architecture for decentralized supervisory control of discrete-event systems

机译:离散事件系统的分散监督控制的通用体系结构

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We consider a generalized form of the conventional decentralized control architecture for discrete-event systems where the control actions of a set of supervisors can be "fused" using both union and intersection of enabled events. Namely, the supervisors agree a priori on choosing "fusion by union" for certain controllable events and "fusion by intersection" for certain other controllable events. We show that under this architecture, a larger class of languages can be achieved than before since a relaxed version of the notion of co-observability appears in the necessary and sufficient conditions for the existence of supervisors. The computational complexity of verifying these new conditions is studied. A method of partitioning the controllable events between "fusion by union" and "fusion by intersection" is presented. The algebraic properties of co-observability in the context of this architecture are presented. We show that appropriate combinations of fusion rules with corresponding decoupled local decision rules guarantee the safety of the closed-loop behavior with respect to a given specification that is not co-observable. We characterize an "optimal" combination of fusion rules among those combinations guaranteeing the safety of the closed-loop behavior. In addition, a simple supervisor synthesis technique generating the infimal prefix-closed controllable and co-observable superlanguage is presented. [References: 27]
机译:我们考虑了离散事件系统的常规分散控制体系结构的一种通用形式,其中可以使用启用事件的并集和交集来“融合”一组管理器的控制动作。即,监督者同意对于某些可控事件选择“联合融合”,对于某些其他可控事件选择“交叉融合”。我们表明,在这种体系结构下,可以实现比以前更大的语言类别,因为在存在监督者的必要和充分条件下,出现了可共同观察性概念的轻松版本。研究了验证这些新条件的计算复杂性。提出了一种在“并集融合”和​​“相交融合”之间划分可控事件的方法。提出了在这种体系结构中协同观测的代数性质。我们表明,融合规则与相应的解耦局部决策规则的适当组合可保证闭环行为相对于无法共同观察到的给定规范的安全性。我们表征了融合规则中的“最佳”组合,以确保闭环行为的安全性。此外,提出了一种简单的主管合成技术,该技术可生成最小的前缀闭合的可控和可共同观察的超语言。 [参考:27]

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