Value of Communication: Data-Driven Topology Optimization for Distributed Linear Cyber-Physical Systems

Michael Nestor, Fei Teng
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Abstract

Communication topology is a crucial part of a distributed control implementation for cyber-physical systems, yet is typically treated as a constraint within control design problems rather than a design variable. We propose a data-driven method for designing an optimal topology for the purpose of distributed control when a system model is unavailable or unaffordable, via a mixed-integer second-order conic program. The approach demonstrates improved control performance over random topologies in simulations and efficiently drops links which have a small effect on predictor accuracy, which we show correlates well with closed-loop control cost.
通信的价值:分布式线性网络物理系统的数据驱动拓扑优化
通信拓扑结构是网络物理系统分布式控制实施的关键部分,但通常被视为控制设计问题中的一个约束条件,而不是一个设计变量。我们提出了一种数据驱动方法,在系统模型不可用或无法负担时,通过混合整数二阶圆锥程序设计出分布式控制的最优拓扑结构。与随机拓扑结构相比,该方法在模拟中提高了控制性能,并有效地放弃了对预测器准确性影响较小的链接,我们证明这与闭环控制成本密切相关。
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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