PV Energy Performance in a Sustainable Campus
The challenge of photovoltaic integration as the basis of an energy generation system has been achieved and carried out by the University Autónoma de Cali, Colombia, using an avant-garde energy technology model. This innovative sustainable campus not only fulfills its purpose as an advanced model of...
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doaj-7b45ee968310483ba18c3b073ece369b2020-11-25T04:08:31ZengMDPI AGElectronics2079-92922020-11-0191874187410.3390/electronics9111874PV Energy Performance in a Sustainable CampusRosaura Castrillón-Mendoza0Paul Andrés Manrique-Castillo1Javier M. Rey-Hernández2Francisco J. Rey-Martínez3Gabriel González-Palomino4Department of Energy and Mechanics, University Autónoma de Occidente, Cali 115-25, ColombiaIngeniería Sistemas Fotovoltaicos, Celsia Colombia SA ESP, Yumbo 760502, ColombiaHigher Polytechnic College, European University Miguel de Cervantes (UEMC), 47012 Valladolid, SpainDepartment of Energy and Fluid Mechanics, School of Engineering (EII), University of Valladolid (UVa), 47002 Valladolid, SpainDepartment of Energy and Mechanics, University Autónoma de Occidente, Cali 115-25, ColombiaThe challenge of photovoltaic integration as the basis of an energy generation system has been achieved and carried out by the University Autónoma de Cali, Colombia, using an avant-garde energy technology model. This innovative sustainable campus not only fulfills its purpose as an advanced model of a renewable energy integration system, it also aims at environmental research, e-mobility, and energy efficiency. This paper describes how the university implements the technological innovation of integrating the photovoltaic system installation in a university campus, showing its relevant contribution to the electricity generation in the campus buildings by analyzing the different electrical parameters together with the system performance indicators. The implementation of technological solutions has allowed the generation of a quantity of renewable energy within the campus, supplying a sustainable energy response based on energy efficiency and carbon emissions savings. This innovation has been applied following the international standards for the evaluation of the energy performance of photovoltaic systems (IEC 61724), reaching very optimal values for this type of renewable solution. In this paper, the dynamic monitoring of several parameters has been carried out in order to analyze the energy performance, and an energy simulation has been used to achieve optimal solutions and to obtain the perfect modeling of the system. This study shows how to evaluate the performance of an integration of a photovoltaic system in a smart university campus, according to international standards. It achieves complete viability due to its economic savings, energy efficiency and reduction of carbon emission.https://www.mdpi.com/2079-9292/9/11/1874energy efficiencysmart campusgrid-connected photovoltaic systemsenergy simulationperformance evaluation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Rosaura Castrillón-Mendoza Paul Andrés Manrique-Castillo Javier M. Rey-Hernández Francisco J. Rey-Martínez Gabriel González-Palomino |
spellingShingle |
Rosaura Castrillón-Mendoza Paul Andrés Manrique-Castillo Javier M. Rey-Hernández Francisco J. Rey-Martínez Gabriel González-Palomino PV Energy Performance in a Sustainable Campus Electronics energy efficiency smart campus grid-connected photovoltaic systems energy simulation performance evaluation |
author_facet |
Rosaura Castrillón-Mendoza Paul Andrés Manrique-Castillo Javier M. Rey-Hernández Francisco J. Rey-Martínez Gabriel González-Palomino |
author_sort |
Rosaura Castrillón-Mendoza |
title |
PV Energy Performance in a Sustainable Campus |
title_short |
PV Energy Performance in a Sustainable Campus |
title_full |
PV Energy Performance in a Sustainable Campus |
title_fullStr |
PV Energy Performance in a Sustainable Campus |
title_full_unstemmed |
PV Energy Performance in a Sustainable Campus |
title_sort |
pv energy performance in a sustainable campus |
publisher |
MDPI AG |
series |
Electronics |
issn |
2079-9292 |
publishDate |
2020-11-01 |
description |
The challenge of photovoltaic integration as the basis of an energy generation system has been achieved and carried out by the University Autónoma de Cali, Colombia, using an avant-garde energy technology model. This innovative sustainable campus not only fulfills its purpose as an advanced model of a renewable energy integration system, it also aims at environmental research, e-mobility, and energy efficiency. This paper describes how the university implements the technological innovation of integrating the photovoltaic system installation in a university campus, showing its relevant contribution to the electricity generation in the campus buildings by analyzing the different electrical parameters together with the system performance indicators. The implementation of technological solutions has allowed the generation of a quantity of renewable energy within the campus, supplying a sustainable energy response based on energy efficiency and carbon emissions savings. This innovation has been applied following the international standards for the evaluation of the energy performance of photovoltaic systems (IEC 61724), reaching very optimal values for this type of renewable solution. In this paper, the dynamic monitoring of several parameters has been carried out in order to analyze the energy performance, and an energy simulation has been used to achieve optimal solutions and to obtain the perfect modeling of the system. This study shows how to evaluate the performance of an integration of a photovoltaic system in a smart university campus, according to international standards. It achieves complete viability due to its economic savings, energy efficiency and reduction of carbon emission. |
topic |
energy efficiency smart campus grid-connected photovoltaic systems energy simulation performance evaluation |
url |
https://www.mdpi.com/2079-9292/9/11/1874 |
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