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Improved Transformerless Inverter With Common-Mode Leakage Current Elimination for a Photovoltaic Grid-Connected Power System

机译:用于光伏并网电源的具有共模泄漏电流消除功能的改进型无变压器逆变器

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To eliminate the common-mode leakage current in the transformerless photovoltaic grid-connected system, an improved single-phase inverter topology is presented. The improved transformerless inverter can sustain the same low input voltage as the full-bridge inverter and guarantee to completely meet the condition of eliminating common-mode leakage current. Both the unipolar sinusoidal pulsewidth modulation (SPWM) as well as the double-frequency SPWM control strategy can be applied to implement the three-level output in the presented inverter. The high efficiency and convenient thermal design are achieved thanks to the decoupling of two additional switches connected to the dc side. Moreover, the higher frequency and lower current ripples are obtained by adopting the double-frequency SPWM, and thus the total harmonic distortion of the grid-connected current are reduced greatly. Furthermore, the influence of the phase shift between the output voltage and current, and the influence of the junction capacitances of the power switches are analyzed in detail. Finally, a 1-kW prototype has been simulated and tested to verify the theoretical analysis of this paper.
机译:为了消除无变压器光伏并网系统中的共模泄漏电流,提出了一种改进的单相逆变器拓扑。改进的无变压器逆变器可以维持与全桥逆变器相同的低输入电压,并保证完全满足消除共模泄漏电流的条件。单极性正弦脉宽调制(SPWM)以及双频SPWM控制策略均可用于在所提出的逆变器中实现三电平输出。得益于连接到直流侧的两个附加开关的去耦,可以实现高效率和便捷的散热设计。此外,通过采用双频SPWM获得较高的频率和较低的电流纹波,因此大大降低了并网电流的总谐波失真。此外,详细分析了输出电压和电流之间的相移影响以及电源开关的结电容的影响。最后,对一个1kW的原型进行了仿真和测试,以验证本文的理论分析。

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