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Accurate Impedance Model of Grid-Connected Inverter for Small-Signal Stability Assessment in High-Impedance Grids

机译:高阻抗电网中用于小信号稳定性评估的并网逆变器精确阻抗模型

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Power quality problems caused by grid-connected renewable energy inverters have been reported in recent literature. Excessive harmonics and interharmonics may arise when the inverter starts to interact with the grid impedance. Small-signal impedance models have been proven to be useful tools to analyze the stability margins. However, most often the grid voltage feedforward loop employed by the inverter is not included in impedance-based analysis. To fill this gap, this paper presents an impedance model, which includes the effect of feedforward, to analyze impedance-based stability in the presence of large grid impedance. The model is verified by impedance measurements from a laboratory prototype. The model is shown to give accurate prediction of small-signal stability when the Nyquist stability-criterion is applied. Thus, the model can be used to re-shape the inverter impedance to avoid stability problems. The developed impedance model will also provide a useful tool to monitor stability margins online, which necessitates adaptive impedance-shaping of grid-connected inverters.
机译:在最近的文献中已经报道了由并网的可再生能源逆变器引起的电能质量问题。当逆变器开始与电网阻抗相互作用时,可能会产生过多的谐波和间谐波。小信号阻抗模型已被证明是分析稳定性裕度的有用工具。但是,基于阻抗的分析通常不包括逆变器采用的电网电压前馈环路。为了填补这一空白,本文提出了一种阻抗模型,其中包括前馈效应,以分析在存在较大电网阻抗的情况下基于阻抗的稳定性。该模型通过实验室原型的阻抗测量得到验证。当应用奈奎斯特稳定性准则时,该模型显示出对小信号稳定性的准确预测。因此,该模型可用于重塑逆变器阻抗以避免稳定性问题。开发的阻抗模型还将提供一个有用的工具,以在线监测稳定性裕度,这需要对并网逆变器进行自适应阻抗整形。

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