Output feedback disturbance attenuation with robustness to nonlinear uncertain dynamics via state-dependent scaling

H. Ito, Zhong-Ping Jiang
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引用次数: 1

Abstract

The paper presents a novel approach to output feedback stabilization with L/sub 2/ disturbance attenuation for nonlinear systems in the presence of dynamic uncertainties. A new method of state-dependent scaling unifies treatment of nonlinear and linear gains in the output feedback design. The effect of disturbance on the controlled output, which is allowed to be any function of output measurements, can be attenuated to an arbitrarily small level with global asymptotic stability if the plant belongs to a wide class of interconnected systems whose uncertain components unnecessarily have finite linear-gain. The uncertain dynamics is not limited to input-to-state stable systems either. The approach is not only a natural extension of popular approaches in robust linear control, but also advantageous to numerical computation. The design procedure proposed in the paper consists of novel recursive calculation of robust observer gain as well as feedback gain.
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通过状态相关标度对非线性不确定动态具有鲁棒性的输出反馈扰动衰减
针对存在动态不确定性的非线性系统,提出了一种具有L/sub /扰动衰减的输出反馈镇定方法。一种新的状态相关标度方法将输出反馈设计中非线性增益和线性增益的处理统一起来。干扰对被控输出的影响,允许是输出测量的任何函数,可以衰减到具有全局渐近稳定的任意小水平,如果该对象属于一类广泛的互联系统,其不确定分量不必要地具有有限线性增益。不确定动力学也不仅限于输入-状态稳定系统。该方法不仅是鲁棒线性控制中常用方法的自然推广,而且有利于数值计算。本文提出的设计方法包括新的鲁棒观测器增益递归计算和反馈增益的递归计算。
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