Grid Connected Three-Phase Boost-Inverter for Solar PV Systems
No Thumbnail Available
Date
2021
Authors
Demirkutlu, Eyyup
İskender, İres
Journal Title
Journal ISSN
Volume Title
Publisher
Open Access Color
OpenAIRE Downloads
OpenAIRE Views
Abstract
This paper presents a transformerless grid-connected three-phase boost-type inverter derived from the Swiss Rectifier (SR) and can be used in solar systems. The proposed boost-inverter retains the great advantages of the Swiss rectifier. Since the number of switches that are instantly switched with high frequency is only two, the switching losses are very low, therefore the proposed boost-inverter is very advantageous in terms of efficiency. Without having large transformer and electrolytic bus capacitors, the boost-inverter has an advantage in terms of size and weight. The switching states of the topology are given in detail. The operation principle of the boost-inverter is described with the help of equivalent circuits. A cascaded control method including current and voltage loops is designed. Simulation results are presented to validate the operation of the boost-inverter and show quality performance of the designed control approach. © 2021, International Journal of Renewable Energy Research. All Rights Reserved.
Description
Keywords
Boost, Current Injection, Grid Connection, Inverter, PV Solar System
Turkish CoHE Thesis Center URL
Fields of Science
Citation
Demirkutlu, Eyyup; İskender, İres (2021). "Grid Connected Three-Phase Boost-Inverter for Solar PV Systems", International Journal of Renewable Energy Research, Vol. 11, No. 2, pp. 776-784.
WoS Q
Scopus Q
Source
International Journal of Renewable Energy Research
Volume
11
Issue
2
Start Page
776
End Page
784