Three Phase Dual Input Direct Matrix Converter for Integration of Two AC Sources from Wind Turbines

M. Saravanan, T. S. Sivakumaran
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引用次数: 1

Abstract

This project proposes a novel dual-input matrix converter (DIMC) which is used to integrate the output of the wind energy to a power grid. The proposed matrix converter is developed based on the traditional indirect matrix converter under reverse power flow operation mode, but with its six-switch voltage source converter replaced by a nine-switch configuration followed by the current source inverter (CSI). Matrix electric power conversion topologies and their switch functions are flexible and are used for specific applications. With the additional three switches, the proposed DIMC can provide six input terminals, which make it possible to integrate two independent AC sources from two independent wind turbines into a single grid tied power electronics interface. Commanded currents can be extracted from the two input sources to the grid. The proposed PI control and modulation schemes guaranteed sinusoidal input and output waveforms as well as reduced THD. The simulation results are provided to validate the effectiveness of the proposed control and modulation schemes for the proposed converter.
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用于风力发电机交流电源集成的三相双输入直接矩阵变换器
本项目提出了一种新型的双输入矩阵变换器(DIMC),用于将风能输出整合到电网中。本文提出的矩阵变换器是在传统逆潮流工作模式下的间接矩阵变换器的基础上发展起来的,但将其六开关电压源变换器改为九开关电流源变换器(CSI)。矩阵电力转换拓扑及其开关功能是灵活的,并用于特定的应用。有了额外的三个开关,提议的DIMC可以提供六个输入终端,这使得两个独立的交流电源从两个独立的风力涡轮机集成到一个单一的电网捆绑电力电子接口成为可能。指令电流可以从两个输入源提取到电网。所提出的PI控制和调制方案保证了正弦输入和输出波形,并降低了THD。仿真结果验证了所提出的控制和调制方案的有效性。
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