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Common-Mode Resonance Damping and DC Voltage Balancing Strategy for LCCL-Filtered Three-Level Photovoltaic Grid-Tied Inverters

机译:LCCL过滤三级光伏网格栓逆变器的共模谐振阻尼和直流电压平衡策略

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摘要

The leakage current caused by common-mode (CM) voltage is a critical issue in transformerless three-level photovoltaic (PV) inverters, which can increase the output current distortion, bring extra power losses, aggravate the electromagnetic interference, and even cause degradation of the panels and safety issues. The LCCL filter was proven to be effective to mitigate the leakage current, whose capacitor is split into two parts, and the common point of the smaller one is connected to the neutral-point (NP) of the DC-link. However, the LCCL-filtered three-level inverter suffers from the CM resonance of the neutral current and the NP voltage imbalance. Therefore, this paper proposes a CM resonance damping and NP voltage balancing strategy for the transformerless LCCL-filtered three-level PV inverter. A novel dual-cascade-loop with a dc voltage-difference outer-loop and a neutral-current inner-loop is proposed to control the CM voltage with a alpha beta gamma-frame space vector pulse width modulation (SVPWM) for damping the CM resonance and balancing the NP voltage. At last, the effectiveness of the proposed strategy is experimentally validated through a 10 kW transformerless LCCL-filtered T-type three-level PV inverter.
机译:由共模(CM)电压引起的漏电流是无变压器三级光伏(PV)逆变器中的致命问题,可以增加输出电流失真,带来额外的功率损耗,加剧电磁干扰,甚至导致劣化面板和安全问题。被证明的LCCL滤波器可有效地减轻漏电流,其电容器被分成两个部分,并且较小的电容器的公共点连接到DC-Link的中性点(NP)。然而,LCCL过滤的三级逆变器遭受中性电流的CM谐振和NP电压不平衡。因此,本文提出了一种用于无变压器LCCL过滤三级PV逆变器的CM共振阻尼和NP电压平衡策略。提出了一种具有DC电压差外环的新型双级联环和中性电流内环,以控制具有αβ伽马框架空间矢量脉冲宽度调制(SVPWM)的CM电压,用于阻尼CM共振和平衡NP电压。最后,通过10 kW无变压器LCCL过滤的T型三级光伏逆变器实验验证了所提出的策略的有效性。

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