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Control strategies for capacitor voltage equalization in neutral clamped shunt compensator

机译:中性夹紧分流补偿器电容电压均衡的控制策略

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This paper proposes control strategies to equalize capacitor voltages in neutral clamped shunt compensator for 3-phase, 4-wire distribution systems. The compensator comprises of a voltage source inverter, two DC storage capacitors and a two-quadrant chopper. The compensator topology is capable of compensating loads containing AC as well as DC. However, a significant problem in the compensator is the capacitor voltage imbalance and drift due to DC component of the current in the neutral path. This degrades the performance of the compensator and must be corrected. This paper describes three control strategies namely single pulse, multi pulse and open loop duty cycle control to regulate the voltage of each capacitor to a reference value. This ensures the correct performance of the compensator. The operation of a 440 V, 3-phase, 4-wire system supplying an AC unbalanced load and a 3-phase half bridge rectifier is studied. The simulation results show the effectiveness of chopper control in eliminating the voltage imbalances in the capacitors. The open loop duty cycle control scheme has also been verified by experimental results.
机译:本文提出了控制策略,使3相4线分布系统等于中性夹紧分流补偿器中的电容电压。补偿器包括电压源逆变器,两个直流存储电容和双象限斩波器。补偿器拓扑能够补偿包含AC以及DC的负载。然而,补偿器中的显着问题是由于中性路径中的电流的DC分量引起的电容器电压不平衡和漂移。这会降低补偿器的性能,必须纠正。本文介绍了三个控制策略,即单脉冲,多脉冲和开环占空比控制,以将每个电容器的电压调节到参考值。这确保了补偿器的正确性能。研究了提供交流不平衡负载和3相半桥整流器的440 V,3相,4线系统的操作。仿真结果表明了斩波器控制在消除电容器中的电压不平衡时的有效性。开放环占空比控制方案也通过实验结果验证。

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