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Formal Control Synthesis via Simulation Relations and Behavioral Theory for Discrete-Time Descriptor Systems

机译:通过模拟关系和行为理论进行正式控制合成离散时间描述符系统

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The control and verification of industrial processes, modeled as discrete-time descriptor systems, is often computationally hard due to the presence of both algebraic couplings and difference equations. In this article, we introduce a new control synthesis method for descriptor systems which is based on formal abstractions and enables control design over related reduced-order models. We leverage notions of exact and approximate similarity relations, which hold for the algebraic couplings that are inherent to descriptor systems. Using the behavioral framework, we extend a control refinement scheme for classical dynamical systems and develop a corresponding notion for descriptor systems: We show that any given well-posed controller of the abstract (reduced-order) descriptor system can be refined to a controller for the original descriptor system. The resulting controlled system preserves the same controlled output behavior in the case of exact similarity, whereas in the case of approximate similarity, the output behavior of the controlled descriptor system is shown to have a bounded deviation from that of the abstract model where the controller is designed.
机译:由于包括代数耦合和差分方程的存在,通常是在计算上难以计算的工业过程的控制和验证。在本文中,我们向基于形式抽象的描述符系统介绍了一种新的控制综合方法,并实现了相关的倒计级模型的控制设计。我们利用精确和近似相似关系的概念,该关系占据了描述符系统固有的代数联轴器。使用行为框架,我们扩展了一种用于古典动态系统的控制细化方案,并为描述符系统开发相应的概念:我们表明可以将任何给定的摘要(缩小阶)描述符系统的良好的控制器提供给控制器原始描述符系统。得到的受控系统在确切相似性的情况下保留相同的受控输出行为,而在近似相似性的情况下,受控描述符系统的输出行为被示出为具有与控制器的抽象模型的界限偏差设计。

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