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H-infinity gain-scheduled controller design for rejection of time-varying narrow-band disturbances applied to a benchmark problem

机译:H-infinity增益预定控制器设计,用于拒绝应用于基准问题的时变窄带干扰

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摘要

A new method for H-infinity gain-scheduled controller design by convex optimization is proposed that uses only frequency-domain data. The method is based on loop shaping in the Nyquist diagram with constraints on the weighted infinity-norm of closed-loop transfer functions. This method is applied to a benchmark for adaptive rejection of multiple narrow-band disturbances. First, it is shown that a robust controller can be designed for the rejection of a sinusoidal disturbance with known frequency. The disturbance model is fixed in the controller, based on the internal model principle, and the other controller parameters are computed by convex optimization to meet the constraints on the infinity-norm of sensitivity functions. It is shown next that a gain scheduled-controller can be computed for a finite set of disturbance frequencies by convex optimization. An adaptation algorithm is used to estimate the disturbance frequency and adjusts the parameters of the internal model in the controller. The simulation and experimental results show the good performance of the proposed control system. (C) 2013 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种仅利用频域数据进行凸优化的H-无限增益调度控制器设计的新方法。该方法基于奈奎斯特图中的环路整形,并且对闭环传递函数的加权无穷范数有约束。该方法适用于多种窄带干扰的自适应抑制基准。首先,示出了可以设计出鲁棒的控制器来抑制具有已知频率的正弦波干扰。根据内模原理,将扰动模型固定在控制器中,并通过凸优化来计算其他控制器参数,以满足对灵敏度函数无穷范数的约束。接下来示出了可以通过凸优化针对一组有限的干扰频率来计算增益调度控制器。自适应算法用于估计干扰频率并在控制器中调整内部模型的参数。仿真和实验结果表明了所提出控制系统的良好性能。 (C)2013欧洲控制协会。由Elsevier Ltd.出版。保留所有权利。

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