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A Distributed Optimization Algorithm for Attack-Resilient Wide-Area Monitoring of Power Systems: Theoretical and Experimental Methods

机译:电力系统防攻击广域分布式分布式优化算法:理论和实验方法

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In this paper we present a real-time distributed optimization algorithm based on Alternating Directions Method of Multipliers (ADMM) for resilient monitoring of power flow oscillation patterns in large power system networks. We pose the problem as a least squares (LS) estimation problem for the coefficients of the characteristic polynomial of the transfer function, and combine a centralized Prony algorithm with ADMM to execute this estimation via distributed consensus. We consider the network topology to be divided into multiple clusters, with each cluster equipped with a local estimator at the local control center. At any iteration, the local estimators receive Synchrophasor measurements from within their own respective areas, run a local consensus algorithm, and communicate their estimates to a central estimator. The central estimator averages all estimates, and broadcasts the average back to each local estimator as the consensus variable for their next iteration. By imposing a redundancy strategy between the local and the global estimators via mutual coordination, we show that the distributed algorithm is more resilient to communication failures as compared to alternative centralized methods. We illustrate our results using a hardware-in-loop power system testbed at NC State federated with a networking and cyber-security testbed at USC/ISI.
机译:在本文中,我们提出了一种基于乘数交替方向方法(ADMM)的实时分布式优化算法,用于弹性监视大型电力系统网络中的潮流振荡模式。我们将该问题作为传递函数特征多项式系数的最小二乘(LS)估计问题,并将集中式Prony算法与ADMM相结合,以通过分布式共识执行该估计。我们考虑将网络拓扑划分为多个群集,每个群集在本地控制中心配备一个本地估计器。在任何迭代中,局部估计器都会从各自区域内接收同步相量测量值,运行局部一致算法,并将其估计值传递给中央估计器。中央估算器对所有估算值求平均值,并将平均值作为下一个迭代的共识变量广播回每个本地估算器。通过相互协调在局部估计器和全局估计器之间施加冗余策略,我们表明与替代的集中式方法相比,分布式算法对通信失败更具弹性。我们使用NC State的硬件在环电源系统测试平台和USC / ISI的网络和网络安全测试平台联合测试系统来说明我们的结果。

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