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Harmonic Droop Controller to Reduce the Voltage Harmonics of Inverters

机译:谐波下降控制器可降低变频器的电压谐波

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摘要

In this paper, the load and/or grid connected to an inverter is modeled as the combination of voltage sources and current sources at harmonic frequencies. As a result, the system can be analyzed at each individual frequency, which avoids the difficulty in defining the reactive power for a system with different frequencies because it is now defined at each individual frequency. Moreover, a droop control strategy is developed for systems delivering power to a constant current source, instead of a constant voltage source. This is then applied to develop a harmonic droop controller so that the right amount of harmonic voltage is added to the inverter reference voltage to compensate the harmonic voltage dropped on the output impedance due to the harmonic current. This forces the output voltage at the individual harmonic frequency to be close to zero and improves the total harmonic distortion (THD) of the output voltage considerably. Both simulation and experimental results are provided to demonstrate that the proposed strategy can significantly improve the voltage THD.
机译:在本文中,连接到逆变器的负载和/或电网建模为谐波频率下电压源和电流源的组合。结果,可以在每个单独的频率下对系统进行分析,这避免了为具有不同频率的系统定义无功功率的困难,因为现在它已在每个单独的频率下定义。此外,针对将功率输送到恒定电流源而不是恒定电压源的系统,开发了下垂控制策略。然后将其用于开发谐波下降控制器,以便将适当量的谐波电压添加到逆变器参考电压,以补偿由于谐波电流而在输出阻抗上下降的谐波电压。这迫使各个谐波频率下的输出电压接近零,并显着改善了输出电压的总谐波失真(THD)。仿真和实验结果均表明该策略可以显着提高电压THD。

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