首页> 外文期刊>IEEE Transactions on Industrial Electronics >Adaptive Feedforward Algorithm Without Grid Impedance Estimation for Inverters to Suppress Grid Current Instabilities and Harmonics Due to Grid Impedance and Grid Voltage Distortion
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Adaptive Feedforward Algorithm Without Grid Impedance Estimation for Inverters to Suppress Grid Current Instabilities and Harmonics Due to Grid Impedance and Grid Voltage Distortion

机译:无需电网阻抗估计的自适应前馈算法可抑制逆变器因电网阻抗和电网电压失真而导致的电网电流不稳定性和谐波

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摘要

The performance of the grid-connected inverter was affected by the uncertainty of the grid conditions including the background distortion and the grid impedance. Typically, the feedforward of the grid voltage at the point of common coupling (PCC) highly suppressed the grid current harmonics caused by the grid voltage distortion; however, the PCC grid usually had a nonnegligible grid impedance, and the PCC voltage feedforward aroused serious grid current harmonics or instability. This study proposes a novel adaptive algorithm for the PCC voltage feedforward to work well with the varied grid impedance. In the proposal, the band-pass filters at the harmonic frequencies are used to detect the variation of the grid impedance as well as to facilitate the adaptive PCC voltage feedforward. It is not necessary to inject an additional harmonic to estimate the grid impedance. The basic principles as well as the realization and logic of the proposed algorithm are detailed, and some selected waveforms are provided to verify the superior performance. Compared with the typical robust design or adaptive control, the proposed algorithm does not have to sacrifice the dynamic or the harmonics rejection performance, or to use the on or offline grid impedance estimation.
机译:并网逆变器的性能受电网条件不确定性的影响,包括背景失真和电网阻抗。通常,在公共耦合点(PCC)处的电网电压前馈会高度抑制由电网电压畸变引起的电网电流谐波。但是,PCC电网通常具有不可忽略的电网阻抗,并且PCC电压前馈会引起严重的电网电流谐波或不稳定。这项研究为PCC电压前馈提出了一种新颖的自适应算法,以在变化的电网阻抗下很好地工作。在该建议中,谐波频率下的带通滤波器用于检测电网阻抗的变化,并有助于自适应PCC电压前馈。不必注入额外的谐波来估算电网阻抗。详细介绍了该算法的基本原理以及实现和逻辑,并提供了一些选定的波形以验证其优越的性能。与典型的鲁棒设计或自适应控制相比,该算法无需牺牲动态或谐波抑制性能,也不必使用在线或离线电网阻抗估计。

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