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Supervisory Control of Discrete-Event Systems with Output: Application to Hybrid Systems

机译:带输出的离散事件系统的监督控制:在混合系统中的应用

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In this paper, the problem of supervisory control of Discrete-Event Systems (DES) with output is presented and discussed at length. In such systems a causal output function is employed to assign each sequence of inputs with a corresponding sequence of outputs. When the specification of the desired behavior is given by a formal language over the output alphabet, necessary and sufficient conditions are derived for the existence of nonblocking input as well as nonblocking output supervisory control. The idea of sibling is introduced to solve the problem of nondeterminism in discrete-event abstractions of hybrid systems, giving rise to the development of a theory for nonblocking supervisory control of hybrid systems. Our results enable one to apply classical supervisory control theory to design supervisors for DES approximations of hybrid systems, and to import many interesting concepts from classical theory such as modular and hierarchical control.
机译:本文提出并讨论了带有输出的离散事件系统(DES)的监督控制问题。在这样的系统中,使用因果输出函数来为输入的每个序列分配对应的输出序列。当通过输出语言上的形式语言给出所需行为的规范时,将为存在无阻塞输入以及无阻塞输出监督控制而导出必要和充分的条件。为了解决混合系统离散事件抽象中的不确定性问题,引入了同级思想,从而引起了混合系统无阻塞监督控制理论的发展。我们的结果使我们能够将经典的监督控制理论应用于混合系统DES逼近的设计监督器,并从经典理论中引入许多有趣的概念,例如模块化和分层控制。

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