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MODELING OF THE SINGLE-PHASE INVERTER IN ISOLATED PHOTOVOLTAIC SYSTEMS TO INVESTIGATE THE EFFECT OF LOW FREQUENCY RIPPLE ON THE CAPACITIVE INPUT FILTER

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JANUARY-DECEMBER 2019   -  Volume: 8 -  Pages: [12 p.]

DOI:

https://doi.org/10.6036/ES9233

Authors:

JOSÉ ANTONIO BERISTÁIN JIMÉNEZ
-
JAVIER PEREZ RAMIREZ
-
GUILLERMO GAMEZ ELIZALDE

Disciplines:

  • Electrical technology and engineering (APLICACIONES ELECTRICAS )

Downloads:   43

How to cite this paper:  
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Received Date :   30 April 2019

Reviewing Date :   23 May 2019

Accepted Date :   6 September 2019


Key words:
Sistema fotovoltaico aislado, inversor puente completo, bombeo de agua, modelado de inversores, Isolated photovoltaic system, full bridge inverter, water pumping, inverter modeling
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

ABSTRACT:
In some applications, where it is not necessary to ensure a constant power supply, it is possible to use photovoltaic systems without batteries. A typical application is the pumping water and subsequent use or for water desalination and storage for later use. Due to the absence of batteries, it is important to carry out an adequate sizing of each part of the system for the correct functioning of the system. This paper presents the modeling of single-phase full bridge inverter for grid isolated photovoltaic systems without the use of batteries for electrical energy storage. The function of the inverter is to take the energy from the photovoltaics modules and deliver it to an ac load, in which the delivered power will be variable due to the fact that storage batteries are not contemplated. The paper focuses on the procedure for obtaining a low frequency averaged model to analyze the effect of the current ripple on the input capacitor for the correct dimensioning of the capacitive filter. Simulation results are shown to validate the presented analysis.

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