Robust generalized asymptotic regulation via an LPV controller without parameter derivative dependence

Hakan Köroglu
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引用次数: 19

Abstract

Attenuation of sinusoidal disturbances with uncertain and arbitrarily time-varying frequencies is considered for a plant that depends on online measurable parameters. The disturbances are modeled as the outputs of a neutrally stable exogenous system that depends on measurable as well as unmeasurable parameters. Solvability conditions are then derived in the form of parameter-dependent matrix inequalities, based on which a linear parameter-varying controller synthesis procedure is outlined. Alternative conditions are provided for the synthesis of a controller that has no dependence on the derivatives of the parameters. It is also clarified how the transient behavior of the controller can be improved.
无参数导数依赖LPV控制器的鲁棒广义渐近调节
对于依赖在线可测参数的装置,考虑了具有不确定和任意时变频率的正弦干扰的衰减。扰动被建模为一个中性稳定的外生系统的输出,该系统依赖于可测量的和不可测量的参数。然后以参数相关矩阵不等式的形式导出了可解性条件,并在此基础上概述了线性变参数控制器的综合过程。为不依赖于参数导数的控制器的合成提供了备选条件。还阐明了如何改进控制器的瞬态行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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