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Application of Wind energy system with active and reactive power injection into the utility grid

机译:风能系统在效用电网中的应用

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The control strategies for back-to-back power conditioner of variable speed wind energy system are presented in this work. Hysteresis current control PWM technique is adopted to control machine side boost converter. The rectified dc voltage is maintained constant for various operating frequencies of the generator. Also, rectified dc voltage is varied up to desired level. The space vector PWM technique with MPPT is applied to control grid side converter. With the help of aforementioned PWM control techniques, the Active power generated from Wind Mill (PMSG generator) at high speed is fed to the utility grid at unity power factor (within the power conditioner VA rating) within the stipulated harmonic current standard. At low wind speed, reactive power is injected into the utility grid where PMSG act as dynamic VAR. The viability of these control strategies are validated through Matlab simulation results.
机译:在这项工作中提出了可变速度风能系统的背对压功率调节器的控制策略。采用滞后电流控制PWM技术控制机侧升压转换器。对于发电机的各种操作频率,整流的DC电压保持恒定。此外,整流的直流电压达到所需的水平。使用MPPT的空间矢量PWM技术应用于控制电网侧转换器。借助于上述PWM控制技术,在规定的谐波电流标准中,在高速下以高速(PMSG发生器)产生的高速产生的电力电网(PMSG发生器)被送入公用事业电网,以便在规定的谐波电流标准内以单位功率因数(在功率调节器VA额定值内)。在低风速下,将无功功率注入到实用电网中,其中PMSG充当动态var。这些控制策略的可行性通过Matlab仿真结果验证。

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