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首页> 外文期刊>SIAM Journal on Control and Optimization >OPTIMAL SUPERVISORY CONTROL OF DISCRETE EVENT DYNAMICAL SYSTEMS
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OPTIMAL SUPERVISORY CONTROL OF DISCRETE EVENT DYNAMICAL SYSTEMS

机译:离散事件动态系统的最优监督控制

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摘要

The notion of optimal supervisory control of discrete event dynamical systems (DEDSs) is formalized in the framework of Ramadge and Wonham. A DEDS is modeled as a state machine and is controlled by disabling some of its transitions. Two types of cost functions are defined: a cost of control function corresponding to disabling transitions in the state machine, and a penalty of control function corresponding to reaching some undesired states or not reaching some desired states in the controlled system. The control objective is to design an optimal control mechanism, if it exists, so that the net cost is minimized. Since a DEDS is represented as a state machine-a directed graph-network flow techniques are naturally applied for designing optimal supervisors. It is also shown that our techniques can be used to solve supervisory control problems under complete as well as partial observation. In particular, for the first time, techniques for computing the supremal controllable and normal sublanguage and the infimal controllable and normal/observable superlanguage without having to perform alternate computations of controllable and normal/observable languages are obtained. [References: 27]
机译:在Ramadge和Wonham的框架中,对离散事件动态系统(DEDS)的最佳监督控制概念进行了形式化。 DEDS被建模为状态机,并通过禁用其某些转换进行控制。定义了两种类型的成本函数:与状态机中的禁用转换相对应的控制函数的成本,以及与在受控系统中达到某些不期望状态或未达到某些期望状态相对应的控制函数的代价。控制目标是设计一个最佳控制机制(如果存在),以使净成本最小化。由于DEDS表示为状态机-有向图网络流程技术自然适用于设计最佳管理程序。还表明,我们的技术可用于解决完全或部分观察下的监督控制问题。特别地,首次获得了用于计算最高可控和正常子语言以及最小可控和正常/可观察超级语言的技术,而不必执行可控和正常/可观察语言的交替计算。 [参考:27]

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