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Stochastic disturbance observer-based adaptive anti-disturbance control for non-linear systems with stochastic non-harmonic multiple disturbances

机译:随机无谐波多扰动的非线性系统的随机扰动观测器的自适应防干扰控制

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摘要

In this paper, the problem of anti-disturbance control is studied for non-linear systems with stochastic multiple disturbances. The multiple disturbances include two types: one is the stochastic harmonic disturbance and the other non-harmonic noise generated by a linear stochastic exogenous system. An adaptive stochastic disturbance observer (ASDO) is constructed to estimate both the two aforementioned disturbances. Combining the disturbance estimation with a conventional state feedback control law, a composite anti-disturbance control scheme is constructed such that the closed-loop system is stochastically stable, and different types of disturbances may be attenuated and rejected. By using the Lyapunov function method and linear matrix inequalities technique, sufficient conditions for the stochastic stability of the closed-loop system are established. Moreover, an adaptive stochastic extended state observer (ASESO) is proposed for the output feedback case. Finally, an application example is provided to demonstrate the effectiveness of the proposed method.
机译:本文研究了具有随机多次扰动的非线性系统的抗扰动控制问题。多种干扰包括两种类型:一个是随机谐波扰动和由线性随机外源系统产生的其他非谐波噪声。构建自适应随机扰动观察者(ASDO)以估计两个上述干扰。将干扰估计与传统的状态反馈控制规律组合,构造了复合抗扰动控制方案,使得闭环系统是随机稳定的,并且可以减弱不同类型的干扰和拒绝。通过使用Lyapunov功能方法和线性矩阵不等式技术,建立了闭环系统随机稳定性的充分条件。此外,提出了一种自适应随机扩展状态观察者(ASESO),用于输出反馈案例。最后,提供了应用示例以证明所提出的方法的有效性。

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