Design of HERIC configuration based grid connected single phase transformer less photovoltaic inverter

Payal Somani, Divyesh J. Vaghela
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引用次数: 11

Abstract

In a grid connected photovoltaic system, the main aim is to design an efficient solar inverter with higher efficiency and which also controls the power that the inverter injects into the grid. The effectiveness of the general PV system anticipate on the productivity by which the direct current of the solar module is changed over into alternating current. The fundamental requirement to interface the solar module to the grid with increased productivity includes: Low THD of current injected to the grid, maximum power point, and high power factor. In this paper, a two stage topology without galvanic isolation is been carried out for a single phase grid connected photovoltaic inverter. The output from the PV panel is given to the DC/DC boost converter, maximum power point tracking (MPPT) control technique is being used to control the gate pulse of the IGBT of boost converter. The boosted output is fed to the highly efficient and reliable inverter concept (HERIC) inverter in order to convert DC into AC with higher efficiency.
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基于HERIC结构的并网单相无变压器光伏逆变器设计
在并网光伏系统中,主要目标是设计一个高效的太阳能逆变器,该逆变器具有较高的效率,并且可以控制逆变器注入电网的功率。一般光伏系统的有效性取决于太阳能组件的直流电转换成交流电的生产率。将太阳能模块连接到电网以提高生产力的基本要求包括:注入电网的电流的低THD,最大功率点和高功率因数。本文对单相并网光伏逆变器进行了无电流隔离的两级拓扑设计。光伏板输出给DC/DC升压变换器,采用最大功率点跟踪(MPPT)控制技术控制升压变换器IGBT的栅极脉冲。升压输出被馈送到高效可靠的逆变器概念(HERIC)逆变器,以便以更高的效率将直流转换为交流。
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