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Delay-dependent Robust Stability Criteria for Linear Uncertain Systems with Interval Time Varying Delay

机译:具有间隔时间变化延迟的线性不确定系统的延迟依赖性鲁棒稳定性标准

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This paper investigates the robust delay-dependent stability problem of a class of linear uncertain system with interval time-varying delay, and proposes less conservative stability criteria for computing the maximum allowable bound of the delay range. The proposed stability criteria are based on the delay central point technique wherein the delay interval is partitioned into two sub-intervals of equal length, and the time variation of a Lyapunov-Krasovskii functional is considered individually for each of these segments in order to reduce the conservatism of the stability criteria. For robust stability conditions, two categories of system uncertainties, namely, time-varying structured and polytopic-type uncertainties are considered. In deriving the stability conditions in LMI framework, neither model transformations, nor bounding techniques using free-weighting matrix variables are employed for dealing the cross-product terms; instead, they are dealt using tighter integral inequalities. This, in turn, makes the proposed approach computationally more efficient and simple. Subsequently, the results obtained are less conservative in the range of allowable delay bound. The effectiveness of the proposed stability criteria is validated through numerical examples.
机译:本文调查了间隔时变延迟的一类线性不确定系统的稳定延迟依赖性稳定性问题,提出了较少的保守稳定标准,用于计算延迟范围的最大允许界限。所提出的稳定性标准基于延迟中心点技术,其中延迟间隔被划分为相等长度的两个子间隔,并且对于每个这些段中的每一个单独地考虑Lyapunov-krasovskii功能的时间变化,以便减少稳定标准的保守主义。对于稳健的稳定性条件,考虑了两类系统不确定性,即时变形和多种子型不确定性。在衍生LMI框架中的稳定条件时,既不是模型变换,也没有使用使用自由加权矩阵变量的界限技术来处理横向产品术语;相反,它们使用更严格的整体不等式进行处理。反过来,这使得建议的方法能够计算地更有效和简单。随后,在允许延迟束缚的范围内获得的结果在较低的保守中。通过数值例子验证了所提出的稳定标准的有效性。

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