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Active and Reactive Power Control Strategy for Grid-Connected Six-Phase Generator by using Multi-Modular Matrix Converters

机译:采用多模块矩阵变换器的并网六相发电机有功和无功功率控制策略

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This paper proposes an active and reactive power control strategy based on predictive control approaches applied to grid-connected renewable energy systems. To accomplish this a multi-modular matrix converter topologies are used in combination with a simple but efficient grid synchronization strategy. The theoretical performance analysis is performed considering a six-phase wind energy generator system interconnected with the grid. Results based on a MATLAB/Simulink simulation environment are discussed and the most relevant characteristics of the proposed control technique are highlighted considering the total harmonic distortion and the mean squared error as a parameters of performance.
机译:本文提出了一种基于预测控制方法的有功和无功功率控制策略,该策略适用于并网可再生能源系统。为此,将多模块矩阵转换器拓扑结构与简单但有效的网格同步策略结合使用。考虑与电网互连的六相风力发电系统,进行了理论性能分析。讨论了基于MATLAB / Simulink仿真环境的结果,并以总谐波失真和均方误差作为性能参数,突出了提出的控制技术的最相关特征。

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