Linear quadratic Gaussian design for robust performance objectives

D. Looze, J. Freudenberg
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引用次数: 1

Abstract

The authors describe a technique for selecting the weighting functions of the LQG/LTR (linear quadratic Gaussian/loop transfer function recovery) formal synthesis procedure to satisfy a robust performance objective. The objective of the feedback system design problem is to achieve a small structured singular value over all frequencies. Existing formal synthesis approaches are used to generate the compensator by selecting the design parameters of the formal synthesis techniques to achieve objectives specified in terms of the structured singular value. The authors consider a problem of tracking an exogenous reference signal (command-following) in the presence of an unstructured multiplicative modeling error at the plant input. For this problem, the characteristics of closed-loop systems which result in a small structured singular value have been identified and quantified. Two formal synthesis approaches for this problem are considered: H/sub 2/-optimization and H/sub infinity /-optimization.<>
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线性二次高斯设计稳健性能目标
作者描述了一种选择LQG/LTR(线性二次高斯/环传递函数恢复)形式合成过程的加权函数的技术,以满足鲁棒性能目标。反馈系统设计问题的目标是在所有频率上获得一个小的结构化奇异值。利用现有的形式综合方法,通过选择形式综合技术的设计参数来生成补偿器,以实现以结构奇异值指定的目标。作者考虑了在植物输入处存在非结构化乘法建模误差的情况下跟踪外源参考信号(命令跟随)的问题。针对这一问题,识别并量化了导致小结构奇异值的闭环系统的特性。考虑了这一问题的两种形式的综合方法:H/sub 2/-优化和H/sub∞/-优化。
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