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Digital simulation of 72 pulse GTO based STATCOM for reduced harmonic injection to grid

机译:基于72脉冲GTO的STATCOM的数字仿真,以减少向电网的谐波注入

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72-pulse gate turn-off thyristor based voltage source converter (GTO-VSC) topology having a number of 12-pulse VSCs as elementary unit together with fundamental frequency mode of GTO gate control are widely used in STATCOM for dynamic reactive power compensation in electrical network. A 72-pulse topology generally produces an AC output voltage waveforms which contain 35th, 37th, etc. harmonics and hardly find its application due to higher total harmonic distortion (THD) level. In this paper, a new model of 3-level, 72-pulse, 500kV, -100MVAr STATCOM employing 6×12-pulse GTO-VSCs, fundamental frequency gate switching, PI-control methodology, DC capacitor as an energy storage and two stages of magnetics is designed and simulated to attenuate harmonics of the order of 35th, 37th, 73th, 75th etc. by Sim Power Systems toolbox in MATLAB environment. The operating performance of the compensator is studied for regulating voltage and power factor correction in electrical network and results show the model acceptable for power system applications.
机译:STATCOM中广泛使用具有12个脉冲VSC作为基本单位的72脉冲栅极关断可控硅基电压源转换器(GTO-VSC)拓扑以及GTO栅极控制的基频模式,用于电气中的动态无功功率补偿网络。 72脉冲拓扑通常会产生包含35、37等谐波的交流输出电压波形,并且由于较高的总谐波失真(THD)级别而很难找到其应用。本文采用6×12脉冲GTO-VSC,基频选通开关,PI控制方法,直流电容器作为能量存储和两级三电平,72脉冲,500kV,-100kVAr STATCOM的新模型在MATLAB环境中,通过Sim Power Systems工具箱设计并仿真了电磁学,以衰减35、37、73、75等数量级的谐波。对补偿器的工作性能进行了研究,以调节电网中的电压和功率因数校正,结果表明该模型可用于电力系统应用。

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