A comparison H∞ control method for uncertain system with time-varying delay

Xiao Min, Shi Zhongke
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Abstract

This paper deals with the problem of the delay-dependent guaranteed cost H∞ control for an improvement interval system with time-varying delay. The time-varying delay is assumed to be in an interval and the derivative of the interval time-varying delay is not restricted, and where only the upper and lower bounds are known, this allows a fast time-varying function. Based on the Lyapunov-Ktasovskii functional, which fractionizes the average delay not the lower bound and deal with easily lower bound to be 0, and free weighting matrices approach without using the general model transformation, and bounding technique to handle the uncertain nonlinear matrices between the B and K. A delay-dependent bounded real lemma (BRL) and then a criterion for existence a state feedback controller is established. This guarantees the cost function upper bound and disturbance attenuation lever for all admissible uncertainties. A comparison Numerical example is given to illustrate the effectiveness of the proposed design method.
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时变时滞不确定系统的比较H∞控制方法
研究一类具有时变时滞的改进区间系统的时滞相关保代价H∞控制问题。假设时变时滞在一个区间内,且该区间时变时滞的导数不受限制,且在只有上界和下界已知的情况下,这允许快速时变函数。基于Lyapunov-Ktasovskii泛函对平均延迟进行分数化而不是下界,且易于处理下界为0的特点,采用自由加权矩阵法而不使用一般模型变换,并结合边界技术处理B和k之间的不确定非线性矩阵,提出了与延迟相关的有界实数引理(BRL),建立了状态反馈控制器存在的判据。这保证了所有允许的不确定性的代价函数上界和干扰衰减杠杆。通过数值算例验证了所提设计方法的有效性。
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