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Research on the Neutral-Point Voltage Balance for NPC Three-Level Inverters under Non-Ideal Grid Conditions

机译:非理想网格条件下NPC三级逆变器中性点电压平衡研究

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摘要

In order to solve the neutral-point voltage unbalancing problem for neutral-point clamped (NPC) three-level inverters under non-ideal grid conditions, a novel zero-sequence component injection method for modulation signals was proposed in this paper. Based on the mathematical expressions of neutral-point voltage unbalancing, the fluctuation of the neutral-point voltage under different grid conditions was studied. The proposed method dynamically calculates the zero-sequence component for modulation signals by region selections based on sinusoidal pulse width modulation (DCR-SPWM). Under non-ideal grid conditions, this DCR-SPWM method can control the neutral-point voltage balance for NPC three-level inverters with different grid and output power conditions, and improves the grid current quality. The simulation results verified the correctness of the theoretical analysis in this paper, and the feasibility and effectiveness of this method were verified by the experiments in the experimental platform of the NPC three-level grid-connected inverter based on DSP-CPLD controllers.
机译:为了解决为中性点的中性点电压的不平衡问题钳位(NPC)非理想电网条件下的三电平逆变器,用于调制信号的新型的零序分量注入法在本文中提出的。基于中性点电压不平衡的数学表达式,不同的网格条件下中性点电压的波动进行了研究。所提出的方法动态地计算由基于正弦脉冲宽度调制(DCR-SPWM)区域选择调制信号的零序分量。在非理想的格条件下,该DCR-SPWM方法可以控制用于与不同的网格和输出功率条件NPC三电平逆变器的中性点电压的平衡,并提高了电网电流质量。仿真结果验证了理论分析的正确性在本文中,并且该方法的可行性和有效性是由实验中基于DSP的CPLD控制器NPC三电平并网逆变器的实验平台验证。

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