Stand-alone hybrid microgrid for remote areas: topology and operation strategy

In remote regions, were a main Utility System for energy distribution is not available, the implementation of Microgrids with hybrid generation are very useful. In this context, a Stand-Alone wind/diesel/gas/battery/supercapacitors Hybrid Microgrid topology is proposed. The main scope is to create a...

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Autores principales: Battaiotto, Pedro Eduardo, Cendoya, Marcelo Gustavo, Toccaceli, Graciela Mabel, Vignoni, José Roberto
Formato: Objeto de conferencia
Lenguaje:Español
Publicado: 2017
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Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/155374
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id I19-R120-10915-155374
record_format dspace
spelling I19-R120-10915-1553742023-07-11T04:08:51Z http://sedici.unlp.edu.ar/handle/10915/155374 isbn:978-1-5386-3397- Stand-alone hybrid microgrid for remote areas: topology and operation strategy Battaiotto, Pedro Eduardo Cendoya, Marcelo Gustavo Toccaceli, Graciela Mabel Vignoni, José Roberto 2017-10 2017 2023-07-10T18:34:15Z es Ingeniería Stand-Alone Microgrid Hybrid Autonomous Remote Wind Diesel-Gas Battery Supercapacitor In remote regions, were a main Utility System for energy distribution is not available, the implementation of Microgrids with hybrid generation are very useful. In this context, a Stand-Alone wind/diesel/gas/battery/supercapacitors Hybrid Microgrid topology is proposed. The main scope is to create a low cost system to feed Residential loads through a local AC bus, using wind energy obtainable at system location. The random characteristics of the wind makes necessary to smooth the fluctuating supply in order to minimize the disturbances on local grid electric parameters. To overcome these problems, a Wind Turbine based on a DFIG machine and Strategies to control the power of a Storage Energy System are employed. An appropriate Supervisor Module with a reliable communication network is used to balance generation and loads, in order to properly operate the Microgrid. The system structure, operation modes and mathematical models for simulation and validation are presented. Instituto de Investigaciones en Electrónica, Control y Procesamiento de Señales Objeto de conferencia Objeto de conferencia http://creativecommons.org/licenses/by-nc-sa/4.0/ Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) application/pdf
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Español
topic Ingeniería
Stand-Alone
Microgrid
Hybrid
Autonomous
Remote
Wind
Diesel-Gas
Battery
Supercapacitor
spellingShingle Ingeniería
Stand-Alone
Microgrid
Hybrid
Autonomous
Remote
Wind
Diesel-Gas
Battery
Supercapacitor
Battaiotto, Pedro Eduardo
Cendoya, Marcelo Gustavo
Toccaceli, Graciela Mabel
Vignoni, José Roberto
Stand-alone hybrid microgrid for remote areas: topology and operation strategy
topic_facet Ingeniería
Stand-Alone
Microgrid
Hybrid
Autonomous
Remote
Wind
Diesel-Gas
Battery
Supercapacitor
description In remote regions, were a main Utility System for energy distribution is not available, the implementation of Microgrids with hybrid generation are very useful. In this context, a Stand-Alone wind/diesel/gas/battery/supercapacitors Hybrid Microgrid topology is proposed. The main scope is to create a low cost system to feed Residential loads through a local AC bus, using wind energy obtainable at system location. The random characteristics of the wind makes necessary to smooth the fluctuating supply in order to minimize the disturbances on local grid electric parameters. To overcome these problems, a Wind Turbine based on a DFIG machine and Strategies to control the power of a Storage Energy System are employed. An appropriate Supervisor Module with a reliable communication network is used to balance generation and loads, in order to properly operate the Microgrid. The system structure, operation modes and mathematical models for simulation and validation are presented.
format Objeto de conferencia
Objeto de conferencia
author Battaiotto, Pedro Eduardo
Cendoya, Marcelo Gustavo
Toccaceli, Graciela Mabel
Vignoni, José Roberto
author_facet Battaiotto, Pedro Eduardo
Cendoya, Marcelo Gustavo
Toccaceli, Graciela Mabel
Vignoni, José Roberto
author_sort Battaiotto, Pedro Eduardo
title Stand-alone hybrid microgrid for remote areas: topology and operation strategy
title_short Stand-alone hybrid microgrid for remote areas: topology and operation strategy
title_full Stand-alone hybrid microgrid for remote areas: topology and operation strategy
title_fullStr Stand-alone hybrid microgrid for remote areas: topology and operation strategy
title_full_unstemmed Stand-alone hybrid microgrid for remote areas: topology and operation strategy
title_sort stand-alone hybrid microgrid for remote areas: topology and operation strategy
publishDate 2017
url http://sedici.unlp.edu.ar/handle/10915/155374
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