Development of a microgrid with renewable energy sources and electrochemical storage system integration

Beside the traditional paradigm of "centralized" power generation, a new concept of "distributed" generation is emerging, in which the same user becomes pro-sumer. During this transition, the Energy Storage Systems (ESS) can provide multiple services and features, which are neces...

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Main Author: Subinas Seco de Herrera, Jose Manuel <1985>
Other Authors: Peretto, Antonio
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2015
Subjects:
Online Access:http://amsdottorato.unibo.it/6923/
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spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-69232016-03-11T05:04:32Z Development of a microgrid with renewable energy sources and electrochemical storage system integration Subinas Seco de Herrera, Jose Manuel <1985> ING-IND/08 Macchine a fluido Beside the traditional paradigm of "centralized" power generation, a new concept of "distributed" generation is emerging, in which the same user becomes pro-sumer. During this transition, the Energy Storage Systems (ESS) can provide multiple services and features, which are necessary for a higher quality of the electrical system and for the optimization of non-programmable Renewable Energy Source (RES) power plants. A ESS prototype was designed, developed and integrated into a renewable energy production system in order to create a smart microgrid and consequently manage in an efficient and intelligent way the energy flow as a function of the power demand. The produced energy can be introduced into the grid, supplied to the load directly or stored in batteries. The microgrid is composed by a 7 kW wind turbine (WT) and a 17 kW photovoltaic (PV) plant are part of. The load is given by electrical utilities of a cheese factory. The ESS is composed by the following two subsystems, a Battery Energy Storage System (BESS) and a Power Control System (PCS). With the aim of sizing the ESS, a Remote Grid Analyzer (RGA) was designed, realized and connected to the wind turbine, photovoltaic plant and the switchboard. Afterwards, different electrochemical storage technologies were studied, and taking into account the load requirements present in the cheese factory, the most suitable solution was identified in the high temperatures salt Na-NiCl2 battery technology. The data acquisition from all electrical utilities provided a detailed load analysis, indicating the optimal storage size equal to a 30 kW battery system. Moreover a container was designed and realized to locate the BESS and PCS, meeting all the requirements and safety conditions. Furthermore, a smart control system was implemented in order to handle the different applications of the ESS, such as peak shaving or load levelling. Alma Mater Studiorum - Università di Bologna Peretto, Antonio 2015-04-16 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/6923/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic ING-IND/08 Macchine a fluido
spellingShingle ING-IND/08 Macchine a fluido
Subinas Seco de Herrera, Jose Manuel <1985>
Development of a microgrid with renewable energy sources and electrochemical storage system integration
description Beside the traditional paradigm of "centralized" power generation, a new concept of "distributed" generation is emerging, in which the same user becomes pro-sumer. During this transition, the Energy Storage Systems (ESS) can provide multiple services and features, which are necessary for a higher quality of the electrical system and for the optimization of non-programmable Renewable Energy Source (RES) power plants. A ESS prototype was designed, developed and integrated into a renewable energy production system in order to create a smart microgrid and consequently manage in an efficient and intelligent way the energy flow as a function of the power demand. The produced energy can be introduced into the grid, supplied to the load directly or stored in batteries. The microgrid is composed by a 7 kW wind turbine (WT) and a 17 kW photovoltaic (PV) plant are part of. The load is given by electrical utilities of a cheese factory. The ESS is composed by the following two subsystems, a Battery Energy Storage System (BESS) and a Power Control System (PCS). With the aim of sizing the ESS, a Remote Grid Analyzer (RGA) was designed, realized and connected to the wind turbine, photovoltaic plant and the switchboard. Afterwards, different electrochemical storage technologies were studied, and taking into account the load requirements present in the cheese factory, the most suitable solution was identified in the high temperatures salt Na-NiCl2 battery technology. The data acquisition from all electrical utilities provided a detailed load analysis, indicating the optimal storage size equal to a 30 kW battery system. Moreover a container was designed and realized to locate the BESS and PCS, meeting all the requirements and safety conditions. Furthermore, a smart control system was implemented in order to handle the different applications of the ESS, such as peak shaving or load levelling.
author2 Peretto, Antonio
author_facet Peretto, Antonio
Subinas Seco de Herrera, Jose Manuel <1985>
author Subinas Seco de Herrera, Jose Manuel <1985>
author_sort Subinas Seco de Herrera, Jose Manuel <1985>
title Development of a microgrid with renewable energy sources and electrochemical storage system integration
title_short Development of a microgrid with renewable energy sources and electrochemical storage system integration
title_full Development of a microgrid with renewable energy sources and electrochemical storage system integration
title_fullStr Development of a microgrid with renewable energy sources and electrochemical storage system integration
title_full_unstemmed Development of a microgrid with renewable energy sources and electrochemical storage system integration
title_sort development of a microgrid with renewable energy sources and electrochemical storage system integration
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2015
url http://amsdottorato.unibo.it/6923/
work_keys_str_mv AT subinassecodeherrerajosemanuel1985 developmentofamicrogridwithrenewableenergysourcesandelectrochemicalstoragesystemintegration
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