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Distributed Auxiliary Inverter of Urban Rail Train—Load Sharing Control Strategy Under Complicated Operation Condition

机译:城市轨道交通分布式辅助变频器-复杂工况下的负荷分担控制策略

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Paralleling is the development tendency of the auxiliary inverter. This paper analyzes the problems of the parallel process in detail. First, for inherent contraction between voltage regulation performance and current sharing performance, the paper adopts the resistive droop method. Second, the paper improves dynamic performance and reliability of the droop method by improving power calculation and introducing the whole cycle adaptive droop method. Third, in order to solve the unshared current problem caused by inconsistent parameters, the paper increases active power proportion droop coefficient, and introduces voltage compensation strategy to compensate voltage drop caused by increased proportion droop coefficient. Fourth, the auxiliary parallel system has complicated load characteristics; the paper proposes voltage compensation strategy to compensate voltage drop caused by the pump load. This paper utilizes three-phase total reactive power to droop frequency and active power of each phase to droop amplitude, unbalanced current can be shared. This paper introduces special virtual impedance technology to solve the harmonic current sharing problem caused by the nonlinear load. Finally, the effectiveness of above theory is fully verified by simulation and experiment.
机译:并联是辅助逆变器的发展趋势。本文详细分析了并行处理的问题。首先,对于调压性能和均流性能之间的固有收缩,本文采用电阻降法。其次,通过改进功率计算并引入全周期自适应下垂方法,提高了下垂方法的动态性能和可靠性。第三,为解决参数不一致引起的电流不均的问题,本文增加了有功功率比例下降系数,并引入了电压补偿策略,以补偿因比例下降系数增大而引起的电压降。第四,辅助并联系统负荷特性复杂;本文提出了一种电压补偿策略来补偿由泵负载引起的电压降。本文利用三相总无功功率来降低频率,每相有功功率来降低幅度,可以共享不平衡电流。本文介绍了特殊的虚拟阻抗技术,以解决非线性负载引起的谐波均流问题。最后,通过仿真和实验充分验证了上述理论的有效性。

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