A multilevel boost inverter with removed leakage current and a reduced number of elements for photovoltaic applications

D. H. Al-Mamoori, N. A. Azli, S. Ayob, Ali A. Abdullah Albakry
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Abstract

Recent research has concerted on transformer-less multilevel inverters (TL-MLIs) due to their high-voltage or high-power capacity for converting the low-voltage output of renewable energy sources to the desired output. Moreover, they yield higher efficiency, lower cost and size than the conventional type. However, these inverters usually suffer from leakage current. The proposed inverter attempts to accommodate this concern to the greatest extent feasible. The proposed inverter structure exhibits a common ground between the input and output ports. Due to this, the total common mode voltage (CMV) is constant. The photovoltaic (PV) source to the grid parasitic capacitor is short-circuited due to this common ground feature, which results in negligible leakage current. The proposed inverter also features a boosting output voltage using only a single voltage source with minimum power devices. The number of output levels can be increased with the modular application of the proposed inverter. Finally, the mathematical analysis for the proposed inverter has been accomplished, and the MATLAB/Simulink simulation results are presented. Also, the results show the output voltage boost capability, zero leakage current and suitable total harmonic distortion for output voltage and current waveforms.
用于光伏应用的多电平升压型逆变器,可消除漏电流并减少元件数量
无变压器多电平逆变器(TL-MLIs)具有高电压或大功率能力,可将可再生能源的低电压输出转换为所需的输出,因此近期的研究集中于此。此外,与传统类型相比,它们的效率更高、成本更低、体积更小。然而,这些逆变器通常存在漏电流问题。拟议的逆变器试图在最大程度上解决这一问题。拟议的逆变器结构在输入和输出端口之间有一个共地。因此,总共模电压 (CMV) 是恒定的。由于这种共地特性,光伏(PV)源到电网寄生电容之间是短路的,因此漏电流可以忽略不计。拟议的逆变器还具有升压输出电压的特点,只使用一个电压源,功率器件最小。通过模块化应用所提出的逆变器,可以增加输出电平的数量。最后,对所提出的逆变器进行了数学分析,并给出了 MATLAB/Simulink 仿真结果。结果还显示了输出电压提升能力、零漏电流以及输出电压和电流波形的适当总谐波失真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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