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Global Stability of Polytopic Linear Time-Varying Dynamic Systems under Time-Varying Point Delays and Impulsive Controls

机译:时变点时滞和脉冲控制下多线性时变动力系统的全局稳定性

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This paper investigates the stability properties of a class of dynamic linear systems possessing several linear time-invariant parameterizations (or configurations) which conform a linear time-varying polytopic dynamic system with a finite number of time-varying time-differentiable point delays. The parameterizations may be timevarying and with bounded discontinuities and they can be subject to mixed regular plus impulsive controls within a sequence of time instants of zero measure. The polytopic parameterization for the dynamics associated with each delay is specific, so that(q+1)polytopic parameterizations are considered for a system withqdelays being also subject to delay-free dynamics. The considered general dynamic system includes, as particular cases, a wide class of switched linear systems whose individual parameterizations are timeinvariant which are governed by a switching rule. However, the dynamic system under consideration is viewed as much more general since it is time-varying with timevarying delays and the bounded discontinuous changes of active parameterizations are generated by impulsive controls in the dynamics and, at the same time, there is not a prescribed set of candidate potential parameterizations.
机译:本文研究了具有几个线性时不变参数化(或配置)的一类动态线性系统的稳定性,这些参数化构成了一个线性时变多主题动态系统,其时变点的时滞数量有限。参数化可能会随时间变化并具有有限的不连续性,并且它们可能会在零测量的时间序列内受到混合的常规加脉冲控制。与每个延迟相关的动力学的多面体参数化是特定的,因此对于q延迟也受无延迟动力学影响的系统,可以考虑(q + 1)个多面体参数化。在特定情况下,所考虑的通用动力系统包括种类繁多的开关线性系统,其各个参数化是随时间变化的,由切换规则控制。但是,所考虑的动态系统被认为是更为通用的,因为它是随时间变化的,具有时变的延迟,并且主动参数化的有界不连续变化是由动力学中的脉冲控制产生的,同时,没有规定候选潜在参数集。

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