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Active Power Filter for Variable-Speed Wind Turbine PMSG Interfaced to Grid and Non-linear Load via three Phase Matrix Converter

机译:用于可变速度风力涡轮机PMSG的有源电力滤波器通过三相矩阵转换器接通到网格和非线性负载

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The present paper aims to design shunt active power filter (APF) for harmonic cancelation of grid-connected wind turbine (WT). The wind energy conversion system (WECS) consists of permanent magnet synchronous generator (PMSG) driven by a variable-speed WT. The output of the PMSG is connected to a direct three phase AC/AC matrix converter (MC) to interface the system with the distribution grid. The MC controls the wind maximum power point tracking (MPPT) via perturbation and observation (P&O) technique. The MC output current harmonics and harmonics of non-linear load are canceled by the proposed shunt APF based on d-q theory. The system under study is simulated using MATLAB/SIMULINK platform. The digital results prove that, the suggested system can submit the generated wind power to the grid without currents/voltages harmonic distortion at grid side, it can also satisfactory eliminate the non-linear load harmonic currents. The system dynamic performance is investigated under different wind speed and loading conditions. The system responses prove that the system works significantly irrespective of wind speed values and demanded load.
机译:本文旨在设计分流有源电力滤波器(APF),用于谐波连接的电网连接风力涡轮机(WT)。风能转换系统(WECs)由由变速WT驱动的永磁同步发电机(PMSG)组成。 PMSG的输出连接到直接三相AC / AC矩阵转换器(MC),以将系统与分布网格接口。 MC通过扰动和观察(P&O)技术控制风最大功率点跟踪(MPPT)。基于D-Q理论,所提出的分流APF取消了非线性负载的MC输出电流谐波和谐波。正在使用MATLAB / SIMULINK平台模拟正在研究的系统。数字结果证明,建议的系统可以向网格提交生成的风电,没有电流/电压在格栅侧的谐波失真,也可以令人满意地消除非线性负载谐波电流。在不同风速和装载条件下调查系统动态性能。系统响应证明,系统无论风速值和要求的负载如何显着地工作。

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