A contraction approach for efficient regulation of networked systems

Jordan J. Romvaryy, Anuradha M. Annaswamyz
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引用次数: 1

Abstract

We present a computationally efficient method for designing regulatory controllers for networked systems using only local information. Using a contraction approach, we derive a connection between a system's intra-dynamics and its neighboring systems. We then show that the design of regulatory controllers is equivalent to a linear feasibility problem on the order of the number of systems. We illustrate our main result using a disturbance mitigation problem, where the goal is to design controllers at a subset of nodes to drive the global nodal values to a particular value in the presence of destabilizing forces. We note that our main result is especially applicable to networks that exhibit interconnection variability and intermittent subsystem faults, like energy grids.
一种有效调节网络系统的收缩方法
我们提出了一种计算效率高的方法来设计仅使用局部信息的网络系统的调节控制器。利用一种收缩方法,我们推导出一个系统的内部动力学与其相邻系统之间的联系。然后,我们证明了调节控制器的设计等效于系统数量顺序上的线性可行性问题。我们使用干扰缓解问题来说明我们的主要结果,其中的目标是在节点的子集上设计控制器,以在存在不稳定力的情况下将全局节点值驱动到特定值。我们注意到,我们的主要结果特别适用于表现出互联可变性和间歇性子系统故障的网络,如能源电网。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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