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A spectral element approach for the stability analysis of time-periodic delay equations with multiple delays

机译:具有多重时滞的时滞时滞方程稳定性分析的谱元方法

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This paper describes a general spectral element approach to study the stability of multiple time delay systems (MTDS). We show, for the first time, how this approach can be applied to periodic MTDS where the delays and the period are incommensurate. In contrast to prior works on MTDS, the spectral element approach is applicable to both autonomous as well as non-autonomous MTDS. Both MTDS of first order or higher can be obtained and systems with or without damping can be investigated. Since the spectral element approach uses efficient interpolation and a set of well-distributed interpolation points, the size of the matrices necessary for convergence is kept small. Further, since the spectral element approach is a semi-analytical procedure, it avoids the need to use tedious time marching algorithms to explore the stability behavior of the system.
机译:本文介绍了一种通用的频谱元素方法来研究多个时滞系统(MTDS)的稳定性。我们首次展示了该方法如何应用于延迟和周期不相称的周期性MTDS。与以前在MTDS上的工作相比,频谱元素方法既适用于自主MTDS,也适用于非自主MTDS。可以获得一级以上的MTDS,并且可以研究具有或不具有阻尼的系统。由于频谱元素方法使用有效的插值和一组分布良好的插值点,因此收敛所需的矩阵大小保持较小。此外,由于频谱元素方法是一种半分析过程,因此无需使用繁琐的时间行进算法来探索系统的稳定性。

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