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Distributed Optimization Algorithms for Wide-Area Oscillation Monitoring in Power Systems Using Interregional PMU-PDC Architectures

机译:使用区域间PMU-PDC体系结构的电力系统广域振荡监测的分布式优化算法

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In this paper, we present a set of distributed algorithms for estimating the electro-mechanical oscillation modes of large power system networks using synchrophasors. With the number of phasor measurement units (PMUs) in the North American grid scaling up to the thousands, system operators are gradually inclining toward distributed cyber-physical architectures for executing wide-area monitoring and control operations. Traditional centralized approaches, in fact, are anticipated to become untenable soon due to various factors such as data volume, security, communication overhead, and failure to adhere to real-time deadlines. To address this challenge, we propose three different communication and computational architectures by which estimators located at the control centers of various utility companies can run optimization algorithms using local PMU data, and thereafter communicate with other estimators to reach a global solution. Both synchronous and asynchronous communications are considered. Each architecture integrates a centralized Prony-based algorithm with several variants of alternating direction method of multipliers (ADMM). We discuss the relative advantages and bottlenecks of each architecture using simulations of IEEE 68-bus and IEEE 145-bus power system, as well as an Exo-GENI-based software defined network.
机译:在本文中,我们提出了一套分布式算法,用于估计使用同步相量的大型电力系统网络的机电振荡模式。随着北美电网中相量测量单元(PMU)的数量增加到数千个,系统运营商逐渐趋向于分布式网络物理体系结构,以执行广域监视和控制操作。实际上,由于各种因素(例如数据量,安全性,通信开销以及无法遵守实时期限),预计传统的集中式方法很快将无法使用。为了应对这一挑战,我们提出了三种不同的通信和计算架构,位于各个公用事业公司控制中心的估算器可以使用本地PMU数据运行优化算法,然后与其他估算器进行通信以达成全局解决方案。同时考虑了同步和异步通信。每种架构都将基于Prony的集中式算法与乘法器交替方向方法(ADMM)的多种变体集成在一起。我们将使用IEEE 68总线和IEEE 145总线电源系统以及基于Exo-GENI的软件定义网络进行仿真,讨论每种体系结构的相对优势和瓶颈。

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