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Topology and Modulation for a New Multilevel Diode-Clamped Matrix Converter

机译:新型多电平二极管钳位矩阵转换器的拓扑和调制

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摘要

To expand the matrix converter application in high power area, a new three-level diode-clamped matrix converter topology as well as a related multicarrier-based modulation scheme is proposed. The topology inherits the features from the conventional multilevel inverter and the indirect matrix converter, which is composed of a cascaded-rectifier and a three-level diode-clamped inverter. The proposed topology can overcome the voltage rating limits of the power semiconductors for high-voltage applications to some extent. Meanwhile, except the general advantages, such as bidirectional power flow, sinusoidal input and output currents, simple switch commutation, and a compact structure, it also avoids the voltage balance issue that exists in most conventional multilevel inverters. Finally, the functionality and effectiveness of the proposed topology and modulation scheme are verified by simulation and experimental results.
机译:为了扩展矩阵转换器在高功率区域中的应用,提出了一种新的三电平二极管钳位矩阵转换器拓扑以及相关的基于多载波的调制方案。该拓扑结构继承了传统多电平逆变器和间接矩阵转换器的功能,间接矩阵转换器由级联整流器和三电平二极管钳位逆变器组成。所提出的拓扑可以在一定程度上克服功率半导体在高压应用中的额定电压极限。同时,除了具有诸如双向潮流,正弦输入和输出电流,简单的开关换向以及紧凑的结构等一般优势外,它还避免了大多数常规多电平逆变器中存在的电压平衡问题。最后,通过仿真和实验结果验证了所提出的拓扑和调制方案的功能和有效性。

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