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Supervisory control of real-time discrete-event systems using lattice theory

机译:基于晶格理论的实时离散事件系统的监督控制

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The behaviour of timed discrete-event systems (DES's) can be described by sequences of event occurrence times. These sequences can be ordered to form a lattice. Since logical (untimed) DES behaviours described by regular languages also form a lattice, questions of controllability for timed DES's may be treated in much the same manner as they are for untimed systems. In this paper we establish conditions for the controllability of timed DES performance specification which are expressed as inequations on the lattice of sequences. These specifications may take the form of sets of acceptable event occurrence times, maximum or minimum occurrence times, or limits on the separation times between events. Optimal behaviours are found as extremal solutions to these inequations using fixed point results for lattices.
机译:定时离散事件系统(DES)的行为可以通过事件发生时间序列来描述。这些序列可以排序以形成晶格。由于由常规语言描述的逻辑(非定时)DES行为也形成一个格子,因此定时DES的可控性问题可以用与非定时系统几乎相同的方式来处理。在本文中,我们为定时DES性能规范的可控制性建立了条件,这些条件表示为序列晶格上的不等式。这些规范可以采取一组可接受的事件发生时间,最大或最小发生时间或事件之间间隔时间的限制的形式。使用格点的定点结果可以找到最佳行为,作为对这些不等式的极值解。

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