Performance of reduced switch topology based harmonic current compensator

P. Deb, Sagarmay Deb, S. Biswas, S. Chowdhury
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Abstract

Diode and thyristor based solid state converters are preferred because of their high reliability in applications for bulk power conversion. These converters generally use Power diodes or SCR (silicon controlled rectifiers) which has non-linear characteristics. Due to this reason such converters generate highly non-sinusoidal currents at the power supply utility. As a result of distorted currents the voltage waveforms at the point of common coupling (PCC) at which other consumers are connected are also exposed to distorted supply. This paper proposes a harmonic compensator using lesser number of power devices controlled by simple and effective current controlled PWM. The reference currents are generated offline based on a particular load current and is used to generate the PWM waveforms to drive the switches intended to reduce the Total Harmonic Distortion (THD) of the input current in the three-phase ac supply system. The performance of the reduced switch harmonic compensator shows significant improvement in the nature of input currents. The power structure of the compensator is a three-limb voltage source converter consisting of four IGBTs, two per leg and the third leg comprising of two split capacitors forming the dc bus and its mid-point acting as the pole point for third wire connection of three-phase.
基于简化开关拓扑的谐波电流补偿器的性能
基于二极管和晶闸管的固态变换器由于其高可靠性在大量功率转换应用中是首选。这些变换器通常使用具有非线性特性的功率二极管或可控硅整流器。由于这个原因,这样的转换器在电源公用事业产生高度非正弦电流。由于扭曲的电流,在其他消费者连接的公共耦合点(PCC)的电压波形也暴露于扭曲的供应。本文提出了一种采用简单有效的电流控制PWM控制,采用较少功率器件的谐波补偿器。参考电流是基于特定负载电流离线产生的,并用于产生PWM波形来驱动开关,旨在降低三相交流供电系统中输入电流的总谐波失真(THD)。简化开关谐波补偿器的性能在输入电流性质上有显著改善。补偿器的功率结构是由四个igbt组成的三分支电压源变换器,每个分支两个,第三分支由两个分裂电容器组成,形成直流母线,其中点作为三相第三线连接的极点。
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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