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Further Results on the Stability Analysis of Singular Systems with Time-Varying Delay: A Delay Decomposition Approach

机译:具有时变时滞的奇异系统稳定性分析的进一步结果:一种时滞分解方法

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This paper deals with the problem of stability analysis for singular systems with time-varying delay. By developing a delay decomposition approach, information of the delayed plant states can be taken into full consideration, and new delay-dependent sufficient stability criteria are obtained in terms of linear matrix inequalities (LMIs), which can be easily solved by various optimization algorithms. The merits of the proposed results lie in their less conservatism which is realized by choosing different Lyapunov matrices in the decomposed intervals and taking the information of the delayed plant states into full consideration. It is proved that the newly proposed criteria may introduce less conservatism than some existing ones. Meanwhile, the computational complexity of the presented stability criteria is reduced greatly since fewer decision variables are involved. Numerical examples are included to show that the proposed method is effective and can provide less conservative results.
机译:研究了时滞时滞奇异系统的稳定性分析问题。通过开发一种延迟分解方法,可以充分考虑植物延迟状态的信息,并根据线性矩阵不等式(LMI)获得新的依赖于延迟的足够稳定性准则,可以通过各种优化算法轻松解决这些准则。提出的结果的优点在于它们的保守性较低,这是通过在分解间隔中选择不同的Lyapunov矩阵并充分考虑延迟的植物状态信息来实现的。事实证明,新提出的标准可能会引入比现有标准更少的保守性。同时,由于涉及较少的决策变量,因此大大降低了所提出的稳定性标准的计算复杂度。数值算例表明,该方法是有效的,保守性较低。

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