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Three-phase Four-Leg High Frequency Link Matrix Rectifier and Its Modulation Strategy

机译:三相四脚高频链路矩阵整流器及其调制策略

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The three-phase four-leg PWM rectifier can be decomposed into three independent single-phase full-bridge rectifiers, and its structure has the advantages of high reliability and strong fault tolerance. In order to improve the applicability of the three-phase high frequency link matrix rectifier under the unbalanced grid, a three-phase four-leg high frequency link matrix rectifier topology is proposed in this paper. Based on the voltage source three-phase three-leg high-frequency link matrix rectifier, the fourth leg is introduced to provide a zero-sequence current path for unbalanced input current, thereby the working performance under unbalanced conditions of the power grid is improved. In this paper, the structure of the proposed topology is analyzed firstly, and then for this topology a de-re-coupling Saddle Pulse Width Modulation(SAPWM) method is proposed. Through this modulation strategy, a stable DC voltage can be output under the condition of unbalanced input power, at the same time, the DC bus voltage utilization rate is improved, and the input current harmonic content is low. The feasibility of the proposed topology and its de-re-coupling SAPWM method is verified by simulation.
机译:三相四桥臂PWM整流器可以分解为三个独立的单相全桥整流器,其结构具有可靠性高,容错性强的优点。为了提高三相高频链矩阵整流器在不平衡电网下的适用性,提出了一种三相四臂高频链矩阵整流器拓扑结构。在电压源三相三臂高频环节矩阵整流器的基础上,引入第四臂为不平衡输入电流提供零序电流路径,从而提高了电网不平衡条件下的工作性能。本文首先对所提出的拓扑结构进行了分析,然后针对该拓扑结构提出了一种解耦的鞍形脉宽调制(SAPWM)方法。通过这种调制策略,可以在输入功率不平衡的情况下输出稳定的直流电压,同时提高了直流母线电压利用率,输入电流谐波含量低。通过仿真验证了所提出的拓扑及其去耦SAPWM方法的可行性。

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