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robust exponential stability and memory state feedback control for uncertain singular time-delay systems with saturating actuators

机译:具有饱和执行器的不确定奇异时滞系统的鲁棒指数稳定性和存储状态反馈控制

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摘要

This study is concerned with delay-dependent robust exponential stability and memory state feedback stabilisation of singular time-delay systems with saturating actuators. First, a delay-dependent linear matrix inequality condition is obtained, which guarantees that the uncertain singular time-delay systems subject to actuator saturation are not only robustly exponential admissible, but also satisfy performance via a tighter integral inequality and the method of free-weighting matrices. Then, using the conditions, the estimation of stability region and the controller with memory state feedback are given by solving a convex optimisation problem. Finally, some numerical examples are provided to demonstrate the merit of the obtained results.
机译:这项研究涉及具有饱和执行器的奇异时滞系统的依赖于延迟的鲁棒指数稳定性和记忆状态反馈稳定性。首先,获得了与时滞有关的线性矩阵不等式条件,这保证了致动器饱和的不确定奇异时滞系统不仅具有鲁棒指数容许性,而且通过更严格的积分不等式和自由加权方法满足性能。矩阵。然后,利用这些条件,通过解决凸优化问题,给出了稳定区域的估计以及具有存储状态反馈的控制器。最后,提供了一些数值例子来说明所获得结果的优点。

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