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PMU-Based Distributed Non-Iterative Algorithm for Real-Time Voltage Stability Monitoring

机译:基于PMU的分布式非迭代算法,用于实时电压稳定性监控

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摘要

The Phasor measurement unit (PMU) measurements are mandatory to monitor the power system’s voltage stability margin in an online manner. Monitoring is key to the secure operation of the grid. Traditionally, online monitoring of voltage stability using synchrophasors required a centralized communication architecture, which leads to the high investment cost and cyber-security concerns. The increasing importance of cyber-security and low investment costs have recently led to the development of distributed algorithms for online monitoring of the grid that are inherently less prone to malicious attacks. In this work, we proposed a novel distributed non-iterative voltage stability index (VSI) by recasting the power flow equations as circles. The processors embedded at each bus in the smart grid with the help of PMUs and communication of voltage phasors between neighboring buses perform simultaneous online computations of VSI. The distributed nature of the index enables the real-time identification of the critical bus of the system with minimal communication infrastructure. The effectiveness of the proposed distributed index is demonstrated on IEEE test systems and contrasted with existing methods to show the benefits of the proposed method in speed, interpretability, identification of outage location, and low sensitivity to noisy measurements.
机译:Phasor测量单元(PMU)测量是强制性地以在线方式监测电力系统的电压稳定性余量。监控是网格安全操作的关键。传统上,使用同步素的电压稳定性在线监测需要集中通信架构,这导致了高投资成本和网络安全问题。最近导致网络安全性和低投资成本的重要性越来越重要地导致了用于在线监测网格的分布式算法的开发,其本质上不太容易发生恶意攻击。在这项工作中,我们通过将电流方程作为圆来重新定位了一种新的分布式非迭代电压稳定性指标(VSI)。在智能电网中嵌入在每个总线上的处理器,以及相邻总线之间的电压相位器的电压相片的通信执行VSI的同时在线计算。索引的分布性质使得具有最小通信基础设施的系统的临界总线的实时识别。在IEEE测试系统上证明了所提出的分布式指数的有效性,并与现有方法形成对比,以显示所提出的方法在速度,解释性,中断位置的识别和对噪声测量的低敏感性的益处。

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