一种用于风电机组电能质量改善和双向潮流控制的统一电能质量调节系统

L. Padmasuresh
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引用次数: 6

摘要

本文提出了一种由矩阵变换器组成的统一电能质量调节器的新方法,以减轻风力发电机的电流谐波、电压跌落和膨胀,并控制具有双向能力的潮流。矩阵变换器在负载侧注入补偿电压,因此可以缓解电压凹陷/膨胀问题,从而有效地解决与电压和电流相关的电能质量问题。因此,所提出的拓扑结构可以减轻电压波动和电流谐波,而不需要储能元件,并且系统产生的总谐波失真也很低。由于矩阵变换器具有双向潮流的能力,所提出的统一电能质量调节器不仅能控制风车的潮流,而且还能实现电力的双向传输。采用空间矢量调制(SVM)控制矩阵变换器。给出了基于Matlab/Simulink的仿真结果,验证了该方法的存储单元和系统产生的总谐波失真也很低。由于矩阵变换器具有双向潮流的能力,所提出的统一电能质量调节器不仅能控制风车的潮流,而且还能实现电力的双向传输。采用空间矢量调制(SVM)控制矩阵变换器。基于Matlab/Simulink的仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Unified Power Quality Conditioning System for Power Quality Improvement and Bidirectional Power Flow Control for Windmill
This paper proposes a new approach of unified power quality conditioner which is made up of a matrix converter to mitigate the current harmonics, voltage sags and swells and control the power flow with Bi directional capability for windmill. Matrix converter injects the compensation voltage on the load-side, so it is possible to mitigate the voltage sag/swell problems, resulting in an efficient solution for mitigating voltage and current related power quality problems. Thus, the proposed topology can mitigate the voltage fluctuations and current harmonics without energy storage elements and the total harmonic distortion produced by the system also very low. Due to the bidirectional power flow capability of matrix converter the proposed unified power quality conditioner capable to control the power flow of the windmill more over it also transfer power bi -directional. The space-vector modulation (SVM) is used to control the matrix converter. Matlab/Simulink based simulation results are presented to validate the approachstorage elements and the total harmonic distortion produced by the system also very low.Due to the bidirectional power flow capability of matrix converter the proposed unified power quality conditioner capable to control the power flow of the windmill more over it also transfer power bi -directional. The space-vector modulation (SVM) is used to control the matrix converter. Matlab/Simulink based simulation results are presented to validate the approach.
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