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AC-DC Matrix Converter with Positive and Negative Output Capacity in Unbalanced Grid

机译:AC-DC矩阵转换器,具有不平衡网格中的正负输出容量

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The study of AC-DC matrix converter under unbalanced power grid is mostly focused on the suppression of the two harmonic of output voltage. In this paper, the voltage type AC-DC matrix converter under unbalanced power network is studied, focusing on the control of the three-phase current in the grid side and the predictive unbalance control strategy with negative sequence voltage compensation is proposed. The strategy can suppress the current harmonics of the grid side, realize the unit power factor and the effect of grid side current sine and high balance under unbalanced power grid, and eliminate the grid side current distortion, in order to reduce the pollution to the power grid. In this strategy, new voltage feedforward quantity is get by the negative sequence voltage compensation and the number of regulators in the current loop in the dq frame is reduced, so that the controller parameter design is greatly simplified. And a de-re-couple SVM modulation strategy with voltage command signal basing on the positive and negative switching is proposed, so that it can meet the requirements of the AC-DC matrix converter with positive and negative output capacity under unbalanced network.
机译:在不平衡电网下AC-DC矩阵转换器的研究主要集中在抑制输出电压的两个谐波。在本文中,研究了在不平衡电网下的电压型AC-DC矩阵转换器,专注于控制网格侧的三相电流的控制和具有负序电压补偿的预测不平衡控制策略。该策略可以抑制电网侧的电流谐波,实现单位功率因数和电网侧电流正弦和高平衡的效果,在不平衡电网下,消除了网格侧电流失真,以便将污染降低到电源网格。在该策略中,通过负序电压补偿,新增电压前馈量是通过负序电压补偿,并且DQ帧中的电流回路中的调节器的数量减小,从而大大简化了控制器参数设计。提出了具有基于正负切换的电压指令信号的去重新耦合SVM调制策略,使得它可以满足AC-DC矩阵转换器在不平衡网络下具有正负输出容量的要求。

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