U.S. Eastern Interconnection (EI) Electromechanical Wave Propagation and the Impact of High PV Penetration on its Speed

Shutang You, Yong Liu, Xuemeng Zhang, Melanie T. Gonzalez, Yilu Liu
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引用次数: 27

Abstract

A power system electromechanical wave propagates from the disturbance location to the rest of system, influencing various types of protections. In addition, since more power-electronics-interfaced generation and energy storage devices are being integrated into power systems, electromechanical wave propagation speeds in the future power systems are likely to change accordingly. In this paper, GPS-synchronized measurement data from a wide-area synchrophasor measurement system FNET/GridEye are used to analyze the characteristics of electromechanical wave propagation in the U.S. Eastern Interconnection (EI) system. Afterwards, high levels of photovoltaic (PV) penetration are modeled in the EI to investigate the influences of a typical power-electronics––interfaced resource on the electromechanical wave propagation speed.
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美国东部电网(EI)机电波传播及高光伏穿透对其速度的影响
电力系统的机电波从扰动位置传播到系统的其余部分,影响各种类型的保护。此外,由于越来越多的电力电子接口发电和储能设备被集成到电力系统中,未来电力系统中的机电波传播速度可能会发生相应的变化。本文利用广域同步测量系统FNET/GridEye的gps同步测量数据,分析了美国东部互联系统(EI)中机电波的传播特性。随后,在EI中建立了高水平光伏(PV)穿透的模型,以研究典型的电力电子界面资源对机电波传播速度的影响。
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