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Stability of distributed controllers with multiple delays

机译:具有多个延迟的分布式控制器的稳定性

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摘要

A model is presented of the dynamics of many controllers in a distributed system, each controlling one element of a vector and, as a system, trying to optimize a function of the vector. It is assumed that the controllers apply an adaptive method to achieve the optimal result. The optimization is challenging since the controllers have delayed information concerning the individual elements of the control vector. The potential exists for each element to be viewed with its own unique delay. Linear stability analysis provides an upper bound of the conditions for damped oscillations and a lower bound on the conditions for persistent oscillations. The results indicate that controllers can improve performance with respect to stability by: 1) communicating more frequently, 2) interacting in smaller groups, 3) slowing down the adaptive search process, and 4) creating more diversity in the delays.
机译:提出了一个分布式系统中许多控制器的动力学模型,每个控制器都控制矢量的一个元素,并且作为一个系统,它试图优化矢量的功能。假定控制器采用一种自适应方法来获得最佳结果。由于控制器延迟了有关控制矢量各个元素的信息,因此优化工作极具挑战性。每个元素都有以其自己独特的延迟被观察的潜力。线性稳定性分析为阻尼振荡提供了一个上限,为持续振荡提供了一个下限。结果表明,控制器可以通过以下方法提高稳定性方面的性能:1)更频繁地进行通信; 2)以较小的组进行交互; 3)减慢自适应搜索过程的速度;以及4)在延迟中创建更多的多样性。

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