IMPACT OF REAL AND REACTIVE POWER CONTROLLABILITY OF STATCOM ON TRANSMISSION LINE PROTECTION 

Q4 Energy
H. Rao, N. Prabhu, R. Mala
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引用次数: 1

Abstract

Static synchronous Compensator (STATCOM) is a shunt connected Voltage Source Converter (VSC) based FACTS controller which is useful in improving the voltage regulation. VSC based FACTS controllers facilitate connection of energy storage devices like battery, fuel cell, Super Magnetic Energy Storage(SMES) etc. at the DC bus. Addition of energy storage device results in better real and reactive power flow control, transient stability enhancement and power oscillation damping. However, FACTS controllers with energy storage device in the line poses new challenges for the line protection device. Operating region of STATCOM with energy storage device (STATCOM – ES) encompasses all the four quadrants in P – Q plane. Impedance contribution by STATCOM operating in any of these four quadrants can modify apparent impedance seen by distance relay and hence needs to be investigated thoroughly. Main aim of this paper is to analyze the impact of emulated conductance and susceptance by four quadrant operation of STATCOM on the performance of distance relay in a hybrid compensated system. A novel control strategy to dynamically modify the reference for real power exchange by STATCOM is proposed to avoid damage to the STATCOM during fault. Possibilities of distance relay under reach and over reach due to operation of STATCOM ES in various operating modes and impact of fault resistance on the relay performance is discussed.
STATCOM有功和无功功率可控性对输电线路保护的影响
静态同步补偿器(STATCOM)是一种基于并联电压源变换器(VSC)的FACTS控制器,可用于提高电压调节性能。基于VSC的FACTS控制器便于在直流总线上连接电池,燃料电池,超磁储能(sme)等储能设备。储能装置的加入使系统的实、无功潮流控制效果更好,增强了暂态稳定性,抑制了功率振荡。然而,带储能装置的FACTS控制器对线路保护装置提出了新的挑战。带储能装置的STATCOM (STATCOM - ES)的工作区域包括P - Q平面上的所有四个象限。STATCOM在这四个象限中的任何一个象限中的阻抗贡献都可以改变距离继电器看到的视阻抗,因此需要进行彻底的研究。本文的主要目的是分析STATCOM四象限运行时模拟的电导和电纳对混合补偿系统中距离继电器性能的影响。提出了一种动态修改STATCOM实电交换参考的控制策略,以避免故障时对STATCOM的损坏。讨论了STATCOM ES在各种工作模式下运行时,距离继电器在到达以下和超过到达的可能性,以及故障电阻对继电器性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Electrical Engineering and Technology
International Journal of Electrical Engineering and Technology Energy-Energy Engineering and Power Technology
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