
Design Analysis and Implementation of a Three Phase Seven Level PV & Wind based Microgrid
Author(s) -
Sudha Dukkipati,
A Marthanda,
G G Rajasekhar,
M. Kiran Kumar
Publication year - 2019
Publication title -
international journal of innovative technology and exploring engineering
Language(s) - English
Resource type - Journals
ISSN - 2278-3075
DOI - 10.35940/ijitee.j1076.0881019
Subject(s) - converters , photovoltaic system , inverter , microgrid , computer science , electrical engineering , voltage , rectifier (neural networks) , three phase , electronic engineering , topology (electrical circuits) , engineering , stochastic neural network , machine learning , recurrent neural network , artificial neural network
This paper proposes an “arrangement of converters for the incorporation of a huge photovoltaic (PV) plant with an utility AC lattice. “The framework involves a focal seven-level voltage-bolstered inverter (VFI) and a substantial number of PV modules with module-incorporated DC-DC converter. The seven-level VFI comprises of three-stage, three-level VFI units associated in parallel on the AC-side. This paper additionally proposes another sun based power age framework, which is made out of a DC/DC and DC/AC control converter and another seven-level inverter”. This new seven-level inverter is arranged utilizing a capacitor choice circuit and a full-connect control converter, associated in course. Seven dimension changes over sustained with PV modules give a practical answer for moderating consonant related issues brought about by diode or thyristor rectifier front-closes. To deal with the huge remuneration flows and give better warm administration, at least two paralleled semiconductor exchanging gadgets can be utilized. The proposed PV based seven dimension topology can likewise create seven voltage levels, which fundamentally diminishes the exchanging current swell and the measure of inactive components.The execution of the proposed power converters framework is considered utilizing MATLAB/Simulink.