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A Current Source Converter-Based Active Power Filter for Mitigation of Harmonics at the Interface of Distribution and Transmission Systems

机译:基于电流源转换器的有源功率滤波器,用于缓解配电和输电系统接口处的谐波

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摘要

A medium-power current source converter (CSC)-based shunt active power filter (APF) system is designed and implemented to suppress the amplification of low-order harmonics at the medium-voltage (MV) interface bus between the distribution and transmission systems, owing to the presence of large shunt capacitor banks installed only for reactive power compensation. Four CSC-based APF modules designed at 1.0 kV are operated in parallel and connected to the 31.5-kV MV bus via a specially designed coupling transformer. In each APF module, a specially designed LC-type input filter eliminates the switching ripples, and active damping method embedded into the control software suppresses harmonic frequencies around the corner frequency of the input filter. The resulting system can operate at relatively high frequencies in the range from 2.0 to 3.0 kHz, depending upon which selected harmonics among 5th, 7th, 11th, and 13th are to be eliminated. Furthermore, in order to reduce the installed capacity of CSCs, selective harmonic amplification method is applied to the APF system described in the paper. MV APF system has been built as a mobile system for temporary connection to a problematic MV interface bus until a permanent solution is found for that location in the distribution system.
机译:设计并实施了一种基于中功率电流源转换器(CSC)的并联有源功率滤波器(APF)系统,以抑制配电系统和传输系统之间的中压(MV)接口总线处的低次谐波放大,由于存在仅用于无功补偿的大型并联电容器组。四个以1.0 kV设计的基于CSC的APF模块并联运行,并通过特殊设计的耦合变压器连接到31.5 kV MV母线。在每个APF模块中,经过特殊设计的LC型输入滤波器消除了开关纹波,控制软件中内置的有源阻尼方法抑制了输入滤波器转折频率附近的谐波频率。最终的系统可以在2.0至3.0 kHz的相对较高频率下运行,具体取决于要消除第5,第7,第11和第13谐波中的哪个谐波。此外,为了减少CSC的安装容量,将选择性谐波放大方法应用于本文所述的APF系统。 MV APF系统已构建为移动系统,用于临时连接到有问题的MV接口总线,直到在配电系统中找到该位置的永久解决方案为止。

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