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Harmonic Suppression and Stability Enhancement for Parallel Multiple Grid-Connected Inverters Based on Passive Inverter Output Impedance

机译:基于无源逆变器输出阻抗的并联多个并网逆变器的谐波抑制和稳定性增强

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摘要

In this paper, the inverter output impedance is passivized for solving the harmonic and the stability problems in the multiparallel inverters. The harmonics are easily aroused because of the disturbances, and the system stability is challenged by the grid impedance. Based on the simplified equivalent impedance model, the two problems are analyzed in the low-frequency (LF) band and the high-frequency (HF) band, respectively. Aiming at improving the LF performance, the weighted-proportional grid voltage feedforward and the harmonic quasi-resonant controller with phase compensation are proposed. The dynamic performance is enhanced with an additional current reference generation scheme. In order to improve the HF performance, a novel digital phase lead filter which brings the system back to a minimum-phase case is proposed. By the proposed control method, the high modulus of each inverter output impedance is guaranteed, while the phase angles of over the entire frequency band are avoided to be lower than −90°. The experiments based on four-parallel inverters have been conducted to validate the effectiveness of the proposed control method.
机译:本文通过对逆变器的输出阻抗进行钝化处理,以解决多并联逆变器的谐波和稳定性问题。由于存在干扰,很容易引起谐波,并且电网阻抗会挑战系统的稳定性。基于简化的等效阻抗模型,分别分析了低频(LF)频带和高频(HF)频带中的两个问题。为了提高低频性能,提出了加权比例电网电压前馈和带相位补偿的谐波准谐振控制器。动态性能通过附加的当前参考生成方案得到增强。为了提高高频性能,提出了一种新颖的数字相位超前滤波器,它将系统带回到最小相位情况。通过所提出的控制方法,确保了每个逆变器输出阻抗的高模量,同时避免了整个频带上的相角小于-90°。已经进行了基于四并联逆变器的实验,以验证所提出的控制方法的有效性。

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