Research on Main Parameters Design Method and Circulation Mechanism of Parallel VSC System

Di Wu, Xuguang Liu, Jinda Zhu, Zhihong Yang, Zhuofei Yu, Jian Luo
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Abstract

Electronic systems and electrical systems usually use parallel VSC to increase drive power or power supply. Parallel VSC systems introduce additional circulation loop apart from 3-phase sequence circuit and circulation current thus appears. Based on modulation model of VSC and analysis of circulation flow path, circulation equivalent circuit of parallel VSC is obtained. The circulating voltage expression based on the BESSEL function is obtained by using VSC’s voltage of ac side to the dc pole. Considering the instantaneous power operation interval and circulation inhibition, system parameters design method of parallel VSC is studied. The influence degree of modulation depth, phase difference and carrier frequency deviation on circulation of parallel system are analyzed and main component is zero-sequence circulation. Finally, take switching frequency circulation as example, Simulation model of two-VSC parallel system based on dq decoupling closed-loop is established to analyze the operation transient characteristics. Two situations of same operating conditions and PWM carrier frequency deviation between two VSC are simulated respectively, simulation results show that system parameter design method proposed in this paper is rational. At the same time, an open-loop parallel VSC model under the same electrical parameters is established, and the trend of different parameter deviation on circulation is analyzed.
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并联VSC系统主要参数设计方法及循环机理研究
电子系统和电气系统通常使用并联VSC来增加驱动功率或电源。并联VSC系统在三相序电路之外引入了额外的循环回路,从而产生了环流。基于VSC的调制模型和循环流道分析,得到了并联VSC的循环等效电路。利用VSC交流侧对直流极的电压,得到了基于BESSEL函数的循环电压表达式。考虑瞬时功率运行间隔和循环抑制,研究了并联VSC系统参数设计方法。分析了调制深度、相位差和载波频率偏差对并联系统环流的影响程度,并以零序环流为主。最后,以开关频率循环为例,建立了基于dq解耦闭环的双vsc并联系统仿真模型,分析了其运行暂态特性。仿真结果表明,本文提出的系统参数设计方法是合理的。同时,建立了相同电气参数下的开环并联VSC模型,分析了不同参数偏差对回路的影响趋势。
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