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Approximately Bisimilar Symbolic Models for Incrementally Stable Switched Systems

机译:渐进稳定开关系统的近似双相似符号模型

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Switched systems constitute an important modeling paradigm faithfully describing many engineering systems in which software interacts with the physical world. Despite considerable progress on stability and stabilization of switched systems, the constant evolution of technology demands that we make similar progress with respect to different, and perhaps more complex, objectives. This paper describes one particular approach to address these different objectives based on the construction of approximately equivalent (bisimilar) symbolic models for switched systems. The main contribution of this paper consists in showing that under standard assumptions ensuring incremental stability of a switched system (i.e., existence of a common Lyapunov function, or multiple Lyapunov functions with dwell time), it is possible to construct a finite symbolic model that is approximately bisimilar to the original switched system with a precision that can be chosen a priori. To support the computational merits of the proposed approach, we use symbolic models to synthesize controllers for two examples of switched systems, including the boost dc–dc converter.
机译:交换系统构成了一个重要的建模范例,忠实地描述了许多工程系统,其中软件与物理世界相互作用。尽管在交换系统的稳定性和稳定性方面取得了长足的进步,但技术的不断发展要求我们在不同的目标(也许更复杂的目标)方面取得相似的进步。本文基于为交换系统构建的近似等效(双相似)符号模型,描述了一种解决这些不同目标的特殊方法。本文的主要贡献在于表明,在确保交换系统的增量稳定性(即,存在公共Lyapunov函数或具有驻留时间的多个Lyapunov函数)的标准假设下,可以构造一个有限符号模型,即可以与先验选择的精度近似地近似于原始交换系统。为了支持所提出方法的计算优势,我们使用符号模型来为两个示例开关系统(包括升压dc-dc转换器)合成控制器。

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