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Transverse contraction criteria for existence, stability, and robustness of a limit cycle

机译:极限循环的存在,稳定性和鲁棒性的横向收缩准则

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摘要

This paper derives a differential contraction condition for the existence of an orbitally-stable limit cycle in an autonomous system. This transverse contraction condition can be represented as a pointwise linear matrix inequality (LMI), thus allowing convex optimisation tools such as sum-of-squares programming to be used to search for certificates of the existence of a stable limit cycle. Many desirable properties of contracting dynamics are extended to this context, including the preservation of contraction under a broad class of interconnections. In addition, by introducing the concepts of differential dissipativity and transverse differential dissipativity, contraction and transverse contraction can be established for interconnected systems via LMI conditions on component subsystems.
机译:本文推导了一个自治系统中存在轨道稳定极限环的微分收缩条件。这种横向收缩条件可以表示为逐点线性矩阵不等式(LMI),从而允许使用凸优化工具(例如平方和编程)来搜索存在稳定极限环的证明。收缩动力学的许多理想特性都扩展到了这种情况,包括在广泛的互连类别下保持收缩。另外,通过引入微分耗散性和横向微分耗散性的概念,可以通过组件子系统上的LMI条件为互连系统建立收缩和横向收缩。

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