Robust performance of control systems containing parameter uncertainty

M. Bozorg
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引用次数: 1

Abstract

In this paper, control of linear systems with uncertain parameters is considered and a method is presented for the computation of allowable parameter perturbations to maintain stability and performance conditions. The desired performance is attained by putting frequency bounds on the sensitivity and the complementary sensitivity functions of the system in order to guarantee appropriate input tracking and sensor noise attenuation. The algorithm makes use of Neimark's D-partition results on robust stability and extends the results to the case of robust performance. Explicit formulae are provided for performance measures, need to be minimized in a frequency range to compute the robust performance margin. The algorithm is then used in a controller synthesis procedure to design robust controllers in order to meet both stability and performance requirements. The details of the implementation of the procedure are illustrated through a case study.
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含参数不确定性控制系统的鲁棒性能
本文研究了具有不确定参数的线性系统的控制问题,提出了一种计算允许参数扰动的方法,以保持系统的稳定性和性能条件。为了保证适当的输入跟踪和传感器噪声衰减,通过对系统的灵敏度和互补灵敏度函数设置频率边界来获得期望的性能。该算法利用了Neimark在鲁棒稳定性上的d划分结果,并将结果推广到鲁棒性能的情况下。提供了性能度量的显式公式,需要在一个频率范围内最小化以计算鲁棒性能裕度。然后将该算法应用于控制器综合过程中,设计鲁棒控制器,以满足稳定性和性能要求。通过一个案例研究说明了该程序的实施细节。
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