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Robust hybrid estimation and rejection of multi-frequency signals

机译:鲁棒的混合估计和多频信号抑制

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We consider the problem of output regulation for LTI systems in the presence of unknown exosystems. The knowledge about the multi-frequency signals exosystem consists in the maximum number of frequencies and their maximal value. The control scheme relies on two main components: an estimation algorithm, to reconstruct the signal generated by the exosystem, and a controller, to enforce the output regulation property to the closed-loop system. To tackle the first task, we propose a hybrid observer for the estimation of the (possibly piece-wise continuous) number and values of the frequencies contained in the exogenous signal. The hybrid observer is particularly appealing for numerical implementations, and it is combined with a self-tuning algorithm of the free parameters (gains), thus improving its performance even in case of noisy measurements. Semi-global exponential convergence of the estimation error is provided. As far as the second task is concerned, a robust hybrid regulator is designed for practical rejection of the multi-frequency disturbance signal acting on the plant. The result is achieved by exploiting the frequencies estimated by the hybrid observer. The effectiveness of the proposed control scheme is shown by means of numerical simulations. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:我们考虑存在未知外系统的情况下LTI系统的输出调节问题。关于多频信号外系统的知识在于最大数量的频率及其最大值。该控制方案依赖于两个主要组件:估计算法(用于重建外系统生成的信号)和控制器(用于将输出调节属性强制应用于闭环系统)。为了解决第一个任务,我们提出了一个混合观测器,用于估计外源信号中包含的(可能是分段连续的)数量和频率值。混合观测器特别适合数字实现,它与自由参数(增益)的自整定算法相结合,因此即使在测量嘈杂的情况下也可以提高其性能。提供了估计误差的半全局指数收敛。就第二项任务而言,设计了一种鲁棒的混合调节器,用于实际抑制作用在设备上的多频干扰信号。通过利用混合观测器估计的频率来获得结果。数值仿真表明了所提出控制方案的有效性。版权所有(c)2016 John Wiley&Sons,Ltd.

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