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首页> 外文期刊>Discrete event dynamic systems: Theory and applications >An efficient modular method for the control of Concurrent Discrete Event Systems: A language-based approach
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An efficient modular method for the control of Concurrent Discrete Event Systems: A language-based approach

机译:控制并行离散事件系统的有效模块化方法:基于语言的方法

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In this paper, we are interested in the control of a particular class of Concurrent Discrete Event Systems defined by a collection of components that interact with each other. We investigate the computation of the supremal controllable language contained in the language of the specification. We do not adopt the decentralized approach. Instead, we have chosen to use a modular centralized approach and to perform the control on some approximations of the plant derived from the behavior of each component. The behavior of these approximations is restricted so that they respect a new language property for discrete event systems called partial controllability condition that depends on the specification. It is shown that, under some assumptions, the intersection of these "controlled approximations" corresponds to the supremal controllable language contained in the specification with respect to the plant. This computation is performed without having to build the whole plant, hence avoiding the state space explosion induced by the concurrent nature of the plant. It is finally shown that the class of specifications on which our method can be applied strictly subsumes the class of separable specifications.
机译:在本文中,我们对由一类相互交互的组件定义的并发离散事件系统的特定类的控制感兴趣。我们研究了规范语言中包含的最高可控语言的计算。我们不采用分散式方法。取而代之的是,我们选择使用模块化的集中式方法,并根据每个组件的行为对工厂的某些近似值进行控制。这些近似的行为受到限制,因此它们遵循离散事件系统的新语言属性,即依赖于规范的称为部分可控制性条件。结果表明,在某些假设下,这些“受控近似值”的交集对应于规范中所包含的针对工厂的最高可控语言。执行该计算而不必构建整个工厂,因此避免了由工厂的并发性质引起的状态空间爆炸。最终表明,可以应用我们的方法的规范类别严格包含了可分离规范的类别。

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