Decentralized local adaptive robust state observers of large scale interconnected systems with uncertainties

Hansheng Wu
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引用次数: 2

Abstract

The problem of decentralized adaptive robust state observer design is considered for a class of uncertain large scale dynamical systems with nonlinear interconnection terms. In the paper, it is assumed that the upper bounds of the uncertainties and nonlinear interconnections are unknown. For such a class of uncertain large scale interconnected dynamical systems, a new method is presented whereby a class of completely decentralized local adaptive robust state observers with a rather simple structure is proposed. It is also shown that for each subsystem, by employing the proposed decentralized adaptive robust state observer, the observation error between the local observer state estimate and the true state of the corresponding subsystem can be guaranteed to be uniformly exponentially convergent towards a ball which can be as small as desired, in the presence of uncertainties. Finally, some simulations of a numerical example are provided to demonstrate the validity of the theoretical results.
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大型不确定互联系统的分散局部自适应鲁棒状态观测器
研究了一类具有非线性互联项的不确定大系统的分散自适应鲁棒状态观测器设计问题。在本文中,假设不确定性和非线性互连的上界是未知的。针对这类不确定的大型互联动力系统,提出了一种构造结构简单的完全分散的局部自适应鲁棒状态观测器的新方法。对于每个子系统,采用所提出的分散自适应鲁棒状态观测器,可以保证在存在不确定性的情况下,局部观测器状态估计与对应子系统真实状态之间的观测误差均匀指数收敛于任意小的球。最后,通过数值算例进行了仿真,验证了理论结果的有效性。
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