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Experimental study on stabilization of model power transmission system by using four quadrant active and reactive power control by SMES

机译:SMES四象限有功无功稳定模型输电系统的实验研究

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摘要

This paper presents the experimental results of stabilization of a model power transmission system by using a Superconducting Magnet Energy Storage (SMES). The SMES, which was composed of two sets of GTO (Gate Turn Off thyristor) power converters and a superconducting coil, is capable of controlling active power (P) and reactive power (Q) simultaneously in four quadrants by changing the firing angles of power converters. The model power transmission system was designed to simulate the behavior of a real scale long distance bulk power transmission system with voltage of 500 kV, capacity of 2000 MVA and length of 280 km. In this study, we have experimented power system stabilizing control by applying P-Q simultaneous control ability of SMES. From the results of experiment it was demonstrated that stabilizing effect by means of SMES is very significant.
机译:本文介绍了使用超导磁体能量存储(SMES)稳定模型电力传输系统的实验结果。 SMES由两组GTO(闸极关断晶闸管)功率转换器和一个超导线圈组成,能够通过改变功率的触发角同时在四个象限中控制有功功率(P)和无功功率(Q)。转换器。设计该模型输电系统,以模拟电压为500 kV,容量为2000 MVA,长度为280 km的真实规模的远距离散装输电系统的行为。在这项研究中,我们通过应用SMES的P-Q同时控制能力,对电力系统稳定控制进行了实验。从实验结果证明,通过SMES的稳定作用是非常显着的。

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