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首页> 外文期刊>International journal of systems science >Delay-dependent and delay-independent energy-to-peak model approximation for systems with time-varying delay
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Delay-dependent and delay-independent energy-to-peak model approximation for systems with time-varying delay

机译:时变时滞系统的时滞和时滞无关能量峰模型逼近

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This paper deals with the problem of computing an approximation system for a given system with time-varying delay such that the energy-to-peak gain of the error system is less than a prescribed scalar. First, a delay-dependent boundedness condition of energy-to-peak gain is given in terms of linear matrix inequalities (LMIs), which recovers the delay-independent case. Then, based on the established delay-dependent boundedness condition of energy-to-peak gain, a sufficient condition to characterize the approximation system is obtained to solve the energy-to-peak model approximation problem in the form of LMIs with inverse constraints. A number of delay-independent energy-to-peak model approximation cases are special cases of a delay-dependent approximation. An efficient algorithm is derived to obtain the approximation models. Finally, examples are employed to demonstrate the effectiveness of the model approximation algorithm.
机译:本文涉及为给定系统计算时变延迟的近似系统的问题,该误差系统的能量峰峰值增益小于规定的标量。首先,根据线性矩阵不等式(LMI)给出了能量至峰值增益的时延依赖有界条件,该条件恢复了时延无关的情况。然后,基于已建立的能量-峰值增益的时延相关有界条件,获得了表征近似系统的充分条件,以具有反约束的LMI形式解决了能量-峰值模型近似问题。许多与延迟无关的能量峰模型近似情况是与延迟有关的近似的特殊情况。推导了一种有效的算法来获得近似模型。最后,通过实例证明了该模型逼近算法的有效性。

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