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The injection of wind power into a grid using a multi-level inverter controlled by SVPWM

机译:使用由SVPWM控制的多电平逆变器将风电注入电网

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This work covers the study of a variable speed wind turbine chain using a Permanent Magnet Synchronous Generator (PMSG) to produce energy injected into a grid. The characteristic parameters of the grid are frequency, the symmetry of the three-phase system and voltage waveform. When the output voltage wave is not sinusoidal, disturbances can affect the proper performance of the equipment connected to the grid. Therefore, to overcome this problem, we have integrated into this chain a back to back converter made up of a two-level rectifier and a five-level inverter NPC that are controlled by the SVPWM technique. The converter control strategy is detailed. This study was handled under the Matlab/Simulink interface. The simulation results demonstrate the high performance of this control strategy in renewable energy applications: reduction of total harmonic distortion and increase in power factor.
机译:这项工作涵盖了使用永磁同步发电机(PMSG)的可变速度风力涡轮机链的研究,以产生注入网格中的能量。网格的特征参数是频率,三相系统的对称性和电压波形。当输出电压波不是正弦的时,干扰会影响连接到网格的设备的适当性能。因此,为了克服这个问题,我们已经集成了由两级整流器和由SVPWM技术控制的五级逆变器NPC组成的返回到后转换器。 Converter控制策略详细说明。本研究在Matlab / Simulink接口下处理。仿真结果表明了可再生能源应用中该控制策略的高性能:减少了总谐波失真和功率因数的增加。

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