基于输入导数抑制的输入约束系统的增益调度控制

H. Nishimura, K. Takagi, K. Yamamoto
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引用次数: 3

摘要

本研究的目的是设计一个增益调度反馈补偿器,用于受输入约束的系统。用双曲切向函数描述输入饱和将系统描述转化为线性参数相关系统的形式。该公式允许通过线性矩阵不等式(LMI)应用增益调度控制综合。为了避免输入限制引起的上弦现象,对输入导数进行了抑制。在以往的研究中,由于使用不连续函数作为输入限制而无法考虑输入导数,而在本研究中,可以在控制器设计中考虑输入导数。这意味着所设计的控制器包含积分器并构建了一类控制系统。即使非线性函数的输入和输出之间没有误差反馈回路,考虑输入导数也可以减轻输入的突然变化。仿真结果表明了该设计方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gain-scheduled control of a system with input constraint by suppression of input derivatives
The purpose of this study is to design a gain-scheduled feedback compensator for a system constrained on the input. Description of the input saturation by the hyperbolic tangential function transfers the system description to a form of a linear parameter-dependent system. This formulation allows applying the gain-scheduling control synthesis via linear matrix inequalities (LMI). In order to avoid the windup phenomena caused by input limitation suppression of the input derivatives is employed. While the input derivatives could not be taken into account in the previous studies because of using the discontinuous functions as the input limitations, in this study it is available to take account of the input derivatives in the controller design. This means that the designed controller includes integrators and constructs a type-one control system. Consideration of input derivatives may mitigate sudden change of the input even if there is no feedback loop of error between input and output of the nonlinear function. Simulation results show usefulness of the proposed design method.
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