iISS框架下网络稳定性的两阶段方法:类矩阵判据的利用

H. Ito, Björn S. Rüffer
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引用次数: 1

摘要

研究了动态网络的全局渐近稳定性问题。当子系统是积分输入到状态稳定(iISS)的情况已经被公认为是众所周知的难以处理的文献。事实上,大输入时能量耗散的缺乏否定了小增益理论在输入到状态稳定子系统中的直接应用。在这里,对于由iISS子系统组成的网络,证明了两阶段方法允许我们通过将轨迹分为瞬态和随后的类似ISS的阶段来利用ISS小增益参数。与先前的iISS结果相比,两阶段方法立即得出了一般非线性网络GAS的充分性判据,该判据以类矩阵形式(阶条件)给出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A two-phase approach to stability of networks given in iISS framework: Utilization of a matrix-like criterion
This article is concerned with global asymptotic stability (GAS) of dynamical networks. The case when subsystems are integral input-to-state stable (iISS) has been recognized as notoriously difficult to deal with in the literature. In fact, the lack of energy dissipation for large input denies direct application of the small-gain argument for input-to-state stable (ISS) subsystems. Here for networks consisting of iISS subsystems it is demonstrated that a two-phase approach allows us to make use of the ISS small-gain argument by separating a trajectory into a transient and a subsequent ISS-like phase. In contrast to the previous iISS results, the two-phase approach immediately leads to a sufficiency criterion for GAS of general nonlinear networks, which is given in a matrix-like form (order condition).
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