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Time and frequency-domain evidence on power quality issues caused by grid-connected three-phase photovoltaic inverters

机译:并网三相光伏逆变器引起的电能质量问题的时域和频域证据

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摘要

The amount of grid-connected inverters has been growing steadily over the past decade due to increase in renewable power generation. These inverters have been reported to degrade power quality in the grid in areas where the amount renewable power generation is large. However, the reasons behind the power quality issues are not yet extensively reported in the literature. The output impedance of single and three-phase PV inverters has been reported to resemble a negative resistance over a frequency range which depends on the selected control scheme and control parameters. Negative resistance can cause impedance-based interactions which may lead to instability, especially, when the inverter is connected to a weak grid which has large inductance. The main contribution of this paper is the experimental results which clearly show that the inverter has a significant role on the reported power quality issues. The inverter is shown to generate harmonic, interharmonic or even subharmonic currents depending on the processed power, component sizing, control parameters and the grid impedance. The paper also demonstrates that these phenomena can be accurately predicted by applying the well-known Nyquiststability criterion.
机译:在过去的十年中,由于可再生能源发电量的增加,并网逆变器的数量一直稳定增长。据报道,这些逆变器在可再生能源发电量较大的地区降低了电网的电能质量。但是,有关电能质量问题的原因尚未在文献中得到广泛报道。据报道,单相和三相PV逆变器的输出阻抗在一个频率范围内类似于负电阻,该频率范围取决于所选的控制方案和控制参数。负电阻会引起基于阻抗的相互作用,这可能会导致不稳定,尤其是在逆变器连接到电感较大的弱电网时。本文的主要贡献是实验结果,这些结果清楚地表明,逆变器在所报告的电能质量问题中具有重要作用。逆变器根据所处理的功率,组件的尺寸,控制参数和电网阻抗,会产生谐波,间谐波甚至亚谐波电流。本文还证明了通过应用众所周知的奈奎斯特稳定性准则可以准确地预测这些现象。

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