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Stability Analysis of Uncertain Systems with Time-Varying Delays via Simplified Lyapunov-Krasovskii Functionals

机译:通过简化Lyapunov-Krasovskii功能的时变延迟不确定系统的稳定性分析

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Uncertainties and time delays exist in practical control systems, which often lead to instability or performance degradation. The existing stability conditions for delay systems are mainly divided into two categories: delay-independent conditions and delay-dependent ones. In general, delay-dependent conditions are less conservative than those of delay-independent ones. In order to reduce conservativeness of these results, many researchers have made unremitting efforts. In particular, with improved Lyapunov-Krasovskii functionals, together with linear matrix inequalities (LMI) approach, we study robust stability of time-varying delay systems with parametric uncertainties. In this paper we first re-visit some delay-dependent LMI stability criteria. Then the stability analysis process is made-more concise by simplifying Lyapunov-Krasovskii functionals, which can be graded more easily, and thus results in stability conditions of less conservativeness. Finally, using the single-machine-infinite-bus system as application, we illustrate upper bounds of time delay in the system which are allowable for the system to be robustly stable. Numeric simulation verifies validity of the suggested methods.
机译:实际控制系统中存在不确定性和时间延迟,这通常导致不稳定或性能下降。延迟系统的现有稳定性条件主要分为两类:延迟无关的条件和延迟相关的条件。通常,延迟依赖条件不如延迟无关的条件较少。为了减少这些结果的保守,许多研究人员已经不懈努力。特别是,通过改进的Lyapunov-Krasovskii功能,以及线性矩阵不等式(LMI)方法,我们研究了具有参数不确定性的时变延迟系统的稳健稳定性。在本文中,我们首先重新访问一些延迟依赖的LMI稳定标准。然后通过简化Lyapunov-Krasovskii功能更简洁的稳定性分析过程,可以更容易地探讨,因此导致稳定性条件较少的保守性。最后,使用单机 - 无限总线系统作为应用,我们说明了系统中允许的系统的上限,允许系统坚固稳定。数字仿真验证了建议方法的有效性。

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