distributed power generation;
inductors;
invertors;
machine control;
photovoltaic power systems;
power generation control;
power grids;
power system interconnection;
switches;
switching convertors;
maximum power point trackers;
microgrid inverter;
photovoltaic system;
boost grid-connected inverter;
AC module PV system;
high-voltage gain switched inductor boost inverter;
current shaping circuit;
H-bridge inverter;
folded circuit;
line frequency;
SIBC;
continuous conduction mode;
PV module;
grid connection requirement;
CS circuit switch control;
sine wave modulation control scheme;
H-bridge switch;
maximum power point tracking;
power;
120;
W;
STEP-UP;
CONVERTER;
TOPOLOGIES;
DESIGN;
D O I:
10.1049/iet-pel.2012.0666
中图分类号:
TM [电工技术];
TN [电子技术、通信技术];
学科分类号:
080906 [电磁信息功能材料与结构];
082806 [农业信息与电气工程];
摘要:
This study proposes a new two-stage high voltage gain boost grid-connected inverter for AC-module photovoltaic (PV) system. The proposed system consists of a high-voltage gain switched inductor boost inverter cascaded with a current shaping (CS) circuit followed by an H-bridge inverter as a folded circuit and its switches operate at line frequency. The switched inductor boost converter (SIBC) has one switch operates like a continuous conduction mode. The maximum power of the PV module is achieved through the SIBC circuit whereas the grid connection requirements are accomplished using the CS circuit with the H-bridge inverter. The switch of the CS circuit is controlled with a sine wave modulation control scheme. The main advantages of the new proposed system are high boosting gain, lower switching losses and reduces the ground leakage current as all H-bridge switches operate at the line frequency. A 120 W prototype has been built and experimentally tested. It has been found that experimental results have a good matching with the proposed analysis and simulation results.