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Synthesis of supervisory controllers for hybrid systems based onapproximating automata

机译:基于近似自动机的混合系统监督控制器的综合

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The paper concerns the synthesis of supervisory controllers for a class of continuous-time hybrid systems with discrete-valued input signals that select differential inclusions for continuous-valued state trajectories and event-valued output signals generated by threshold crossings in the continuous state space, the supervisor is allowed to switch the input signal value when threshold events are observed. The objective is to synthesize a nonblocking supervisor such that the set of possible sequences of control and threshold event pairs for the closed-loop system lies between given upper and lower bounds in the sense of set containment. We show how this problem can be converted into a supervisor synthesis problem for a standard controlled discrete-event system (DES). A finite representation may not exist for the exact DES model of the hybrid system, however. To circumvent this difficulty, we present an algorithm for constructing finite-state Muller automata that accept outer approximations to the exact controlled threshold-event language, and we demonstrate that supervisors that solve the synthesis problem for the approximating automata achieve the control specifications when applied to the original hybrid system
机译:本文涉及一类具有离散值输入信号的连续时间混合系统的监督控制器的综合,该系统选择连续值状态轨迹的微分包含和连续状态空间中阈值交叉产生的事件值输出信号。观察到阈值事件时,主管可以切换输入信号值。目的是合成一个无阻塞的管理器,以使闭环系统的控制事件和阈值事件对的可能序列集合在集合约束的意义上位于给定的上限和下限之间。我们展示了如何将此问题转换为标准受控离散事件系统(DES)的主管综合问题。但是,对于混合系统的精确DES模型,可能不存在有限的表示形式。为了解决这一难题,我们提出了一种构造有限状态穆勒自动机的算法,该算法接受对精确受控阈值事件语言的外部逼近,并且证明了解决近似自动机综合问题的管理者在应用于以下情况时会达到控制规范:原始的混合动力系统

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