MIMO系统状态反馈控制器设计方法的比较

P. Barsaiyan, S. Purwar
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引用次数: 11

摘要

本文的目的是比较四种状态反馈跟踪控制器设计方法的时间规格性能,并确定哪种控制方法对线性MIMO系统具有更好的性能。四种控制器设计方法分别是极点放置法、线性二次型调节器(LQR)、特征值赋值法来塑造输出响应,以及基于摩尔特征结构赋值法来控制MIMO系统的线性化模型。在极点配置方法中,存在部分分量超调、收敛速度慢、不能提供鲁棒解的问题。LQR保证了全状态反馈的稳定性和鲁棒性,但在设置闭环结构时不提供分配特征值和特征向量的灵活性。采用特征值分配来调节最小相位线性多变量方阵装置的输出响应。基于摩尔特征结构分配的方法具有非超调和快速响应的特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of state feedback controller design methods for MIMO systems
The objective of this paper is to compare the time specification performance among four state feedback tracking controller design methods and determine which control method delivers better performance for linear MIMO systems. The four controller design methods are Pole Placement method, Linear Quadratic Regulator (LQR), an Eigenvalue Assignment method for shaping the output response and a method based on Moore's Eigenstructure Assignment for controlling the linearized model of MIMO systems. In the Pole Placement method, some components overshoot, the convergence is slow and does not provide robust solution. LQR assures stability robustness with full state feedback but does not provide the flexibility of assigning eigenvalues and eigenvectors in placing closed loop structure. Eigenvalue Assignment is used to regulate the output response of minimum phase linear multivariable square plants. A method based on Moore's Eigenstructure Assignment provides nonovershooting and fast response.
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