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Research on low-order current harmonics rejections for grid-connected LCL-filtered inverters

机译:并网LCL滤波逆变器的低阶电流谐波抑制研究

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摘要

The current quality is an important indicator to evaluate the performance of a grid-connected inverter. In practice, many factors including the grid voltage distortion, dead-time effect, non-ideal switches and dc-link disturbances would result in many low-order harmonics in the injected grid current. The inverter with either the typical grid voltage feedforward or the harmonic resonant (HR) control had some difficulties in rejecting the impact of multi-harmonic sources. In this study, the combination of the grid voltage feedforward and the multi-HR control is proposed to suppress low-order harmonics. It is found that all those harmonic sources are classified into two kinds, and a general way is provided to analyse the harmonic rejection of the inverter with the typical or the proposed strategy. The low-order current harmonics of the inverter with different strategies are clearly explained. The comparative analysis, simulations and experiments all indicate that the proposed strategy greatly improves the ability of the inverter to reject the current harmonics induced by multi-harmonic sources as long as the grid feedforward and the resonant control are complementary.
机译:当前质量是评估并网逆变器性能的重要指标。实际上,许多因素包括电网电压畸变,空载时间效应,非理想开关和直流母线干扰都会在注入的电网电流中产生许多低次谐波。具有典型电网电压前馈或谐波谐振(HR)控制的逆变器在拒绝多谐波源的影响方面存在一些困难。在这项研究中,提出了电网电压前馈和多HR控制的组合来抑制低阶谐波。发现所有这些谐波源都可以分为两种,并提供了一种通用的方法来分析具有典型或拟议策略的逆变器的谐波抑制。清楚地说明了采用不同策略的逆变器的低阶电流谐波。对比分析,仿真和实验均表明,只要电网前馈和谐振控制是相辅相成的,所提出的策略就大大提高了逆变器抑制多谐波源感应的电流谐波的能力。

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