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ADMM Optimization Strategies for Wide-Area Oscillation Monitoring in Power Systems Under Asynchronous Communication Delays

机译:异步通信时延下电力系统广域振荡监控的ADMM优化策略

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In this paper, we present a suite of asynchronous distributed optimization algorithms for wide-area oscillation estimation in power systems using alternating direction method of multipliers (ADMMs). We first pose the estimation problem as a real-time, iterative, and distributed consensus problem. Thereafter, we consider a probabilistic traffic model for modeling delays in any typical wide-area communication network, and study how the delays enter the process of information exchange between distributed phasor data concentrators that are employed to execute this consensus algorithm in a coordinated fashion. Finally, we propose four different strategies by which the convergence rate and accuracy of this consensus algorithm can be made immune to the asynchrony resulting from the network traffic. We carry out extensive simulations to show possible numerical instabilities and sensitivities of the ADMM convergence on our proposed strategies. Our results exhibit a broad view of how the convergence of any distributed estimation algorithm in a generic cyber-physical system depends strongly on the uncertainties of the underlying communication models.
机译:在本文中,我们提出了一套用于电力系统中使用乘法器交替方向方法(ADMM)的广域振荡估计的异步分布式优化算法。我们首先将估计问题提出为实时,迭代和分布式共识问题。此后,我们考虑一个概率流量模型,用于对任何典型的广域通信网络中的延迟进行建模,并研究延迟如何进入分布式相量数据集中器之间的信息交换过程,该相量数据集中器用于以协调方式执行此共识算法。最后,我们提出了四种不同的策略,可以使该共识算法的收敛速度和准确性不受网络流量导致的异步影响。我们进行了广泛的模拟,以显示我们提出的策略可能存在的ADMM收敛数值不稳定性和敏感性。我们的结果展示了一个通用的物理网络系统中任何分布式估计算法的收敛如何在很大程度上取决于基础通信模型的不确定性的广阔视野。

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