基于上下文触发的抽象控制设计

Satya Prakash Nayak;Lucas N. Egidio;Matteo Della Rossa;Anne-Kathrin Schmuck;Raphael M. Jungers
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引用次数: 0

摘要

我们考虑了非线性动力系统的混合控制器的自动合成问题,该控制器确保闭环满足任意线性时序逻辑规范。此外,该规范可以考虑由外部环境或系统本身引起的逻辑上下文切换。最后,为了可伸缩性,我们希望避免经典的暴力时间和空间离散化。我们通过一种新的两层策略综合方法来实现这些目标,其中在较低层生成的控制器提供不变集和吸引池,在较高的逻辑层以抽象的方式利用它们。为了实现这一点,我们为上层和下层合成提供了新的技术。我们的新方法允许以可扩展的方式利用状态空间控制技术的计算能力和复杂规范的有限对策求解的智能。
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Context-Triggered Abstraction-Based Control Design
We consider the problem of automatically synthesizing a hybrid controller for non-linear dynamical systems which ensures that the closed-loop fulfills an arbitrary Linear Temporal Logic specification. Moreover, the specification may take into account logical context switches induced by an external environment or the system itself. Finally, we want to avoid classical brute-force time- and space-discretization for scalability. We achieve these goals by a novel two-layer strategy synthesis approach, where the controller generated in the lower layer provides invariant sets and basins of attraction, which are exploited at the upper logical layer in an abstract way. In order to achieve this, we provide new techniques for both the upper- and lower-level synthesis. Our new methodology allows to leverage both the computing power of state space control techniques and the intelligence of finite game solving for complex specifications, in a scalable way.
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Erratum to “Learning to Boost the Performance of Stable Nonlinear Systems” Generalizing Robust Control Barrier Functions From a Controller Design Perspective 2024 Index IEEE Open Journal of Control Systems Vol. 3 Front Cover Table of Contents
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