一种具有漏电抑制的高效无变压器光伏并网逆变器

Shakil Ahamed Khan, Youguang Guo, Jianguo Zhu
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引用次数: 11

摘要

本文提出了一种新型的无二极管和共模电压(CMV)箝位支路,用于单相无变压器并网光伏(PV)逆变器,可以完全消除漏电流和降低导通损耗。过去,人们提出了各种隔离技术来消除无变压器光伏逆变器的漏电流。但是,仅仅通过电流隔离并不能完全消除漏电流,因为开关结电容会产生谐振通路,也会产生漏电流。所提出的自由支路由四个mosfet以及箝位支路组成,箝位支路由两个mosfet和电容分压器组成。分压器连接到变换器的直流侧,以保持自由路径中的恒定CMV。因此,改进的CMV箝位已经实现了完全消除泄漏电流。采用单极正弦脉宽调制(SPWM)技术和带交流去耦的改进HERIC拓扑进行电流隔离,以降低传导损耗。所提出的拓扑结构在自由旋转和箝位路径中仅由MOSFET组成,与基于二极管的拓扑结构相比,它提供了更低的传导损耗。分析了该拓扑在共模特性、漏电流、总谐波畸变和转换效率等方面的性能,并与H5、H6、HERIC和HBZBR拓扑进行了比较。利用MATLAB/Simulink和PSIM进行了详细的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A high efficiency transformerless PV grid-connected inverter with leakage current suppression
This paper presents a new diode free freewheeling and common-mode voltage (CMV) clamping branches for single phase transformerless grid connected photovoltaic (PV) inverter for complete leakage current elimination and low conduction losses. In the past, various isolation techniques have been proposed for leakage current elimination in transformerless PV inverters. However, galvanic isolation only cannot completely eliminate leakage current due to that a resonant path is created by the switch junction capacitors, which also generate leakage current. The proposed freewheeling branch consists of four MOSFETs along with a clamping branch, which consists of two MOSFETs and a capacitor divider. The divider is connected to the DC side of the converter to keep constant CMV in the freewheeling path. As a result, the improved CMV clamping has been achieved for complete leakage current elimination. The unipolar sinusoidal pulse width modulation (SPWM) technique and modified HERIC topology with AC-decoupling for galvanic isolation is adopted for lower conduction losses. The proposed topology consists of only MOSFET in the freewheeling and clamping path which provides lower conduction losses compared with diode based topologies. The performances of the proposed topology in terms of common mode characteristics, leakage current, total harmonic distortion and conversion efficiency are analyzed and compared with H5, H6, HERIC and HBZBR topologies. The detail analyses are performed using MATLAB/Simulink and PSIM.
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