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Timed Petri nets in hybrid systems: Stability and supervisory control

机译:混合系统中的定时Petri网:稳定性和监督控制

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In this paper, timed Petri nets are used to model and control hybrid systems. Petri nets are used instead of finite automata primarily because of the advantages they offer in dealing with concurrency and complexity issues. A brief overview of existing results on hybrid systems that are based on Petri nets is first presented. A class of rimed Petri nets named programmable timed Petri nets (PTPN) is then used to model hybrid systems. Using the PTPN, the stability and supervisory control of hybrid systems are addressed and efficient algorithms are introduced. In particular, we present sufficient conditions for the uniform ultimate boundness of hybrid systems composed of multiple linear time invariant plants which are switched between using a logical rule described by a Petri net. This paper also examines the supervisory control of a hybrid system in which the continuous state is transfered to a region of the state space in a way that respects safety specifications on the plant's discrete and continuous dynamics. [References: 52]
机译:在本文中,定时Petri网用于建模和控制混合系统。使用Petri网代替有限自动机,主要是因为它们在处理并发和复杂性问题方面具有优势。首先简要概述了基于Petri网的混合系统的现有结果。然后使用一类有边缘Petri网(称为可编程定时Petri网(PTPN))对混合系统进行建模。使用PTPN,解决了混合系统的稳定性和监督控制问题,并介绍了有效的算法。特别地,我们为由多个线性时不变植物组成的混合系统的一致最终极限提供了充分的条件,该混合线性系统使用Petri网描述的逻辑规则之间进行切换。本文还研究了混合系统的监督控制,在该混合系统中,将连续状态转移到状态空间的某个区域,该方式应遵循有关工厂离散和连续动态的安全规范。 [参考:52]

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