A Single Phase Transformerless CSI Inverter Topology for Minimization of Leakage Current in Grid Integrated PV Systems

Mahendra Chand Bade, Sankar Peddapati, V. Sonti
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Abstract

This paper presents the design and analysis of a new five-level single-phase transformer-less current source inverter (CSI) topology for the minimization of ground/leakage current in PV grid integration systems. The topology is configured using inductors & high and low-frequency groups of switches. The Pulse Width Modulation (PWM) is applied to a high-frequency group of switches to fulfill the charging & discharging of inductor currents and the low-frequency group of switches is operated to obtain bi-directional current/voltage at the output. The topology is controlled to limit the common-mode voltage (CMV) frequency at line frequency and thereby the leakage currents are shown minimized. The operation of the converter and MATLAB-based simulation results are presented in the work to showcase the merits of the proposed topology in improving the voltage/current profiles in comparison with the existing ones.
电网集成光伏系统中漏电电流最小的单相无变压器CSI逆变器拓扑
本文提出了一种新的五电平单相无变压器电流源逆变器(CSI)拓扑结构的设计和分析,以最大限度地减少光伏并网系统中的接地/漏电流。该拓扑结构使用电感器和高、低频开关组进行配置。对高频开关组进行脉宽调制(PWM),实现电感电流的充放电,对低频开关组进行操作,在输出端获得双向电流/电压。控制拓扑结构以限制共模电压(CMV)频率在线频率,从而显示泄漏电流最小。文中给出了变换器的工作原理和基于matlab的仿真结果,以证明与现有拓扑相比,所提出的拓扑在改善电压/电流分布方面的优点。
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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