PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and Assessment
The integration of renewables into power systems has led to multiple studies and analysis in terms of grid-power quality, reliability, and/or feasibility. Among different resources to be considered as alternative energy systems, wind and solar emerge as the most mature technologies. With regard to p...
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doaj-bea3c5071c9b4c579ed29c1ff96b04f62020-11-24T20:51:11ZengMDPI AGEnergies1996-10732018-11-011111305110.3390/en11113051en11113051PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and AssessmentJosé Miguel Paredes-Parra0Antonio Mateo-Aroca1Guillermo Silvente-Niñirola2María C. Bueso3Ángel Molina-García4Technological Center for Energy and Environment (CETENMA), 30353 Cartagena, SpainDepartment of Electronic Technology, Universidad Politécnica de Cartagena, 30202 Cartagena, SpainDepartment of Electrical Engineering, Universidad Politécnica de Cartagena, 30202 Cartagena, SpainDepartment of Applied Mathematics and Statistics, Universidad Politécnica de Cartagena, 30202 Cartagena, SpainDepartment of Electrical Engineering, Universidad Politécnica de Cartagena, 30202 Cartagena, SpainThe integration of renewables into power systems has led to multiple studies and analysis in terms of grid-power quality, reliability, and/or feasibility. Among different resources to be considered as alternative energy systems, wind and solar emerge as the most mature technologies. With regard to photovoltaic (PV) installations, monitoring problems requires detailed analysis, since solar-radiation fluctuations, soiling on solar panels, or deficiency of PV-panel performance can involve unexpected power-output oscillations and, subsequently, undesirable power-generation oscillations. Under this framework, this paper describes and assesses a wireless low-cost PV-module monitoring system based on open-source solutions. Our proposal allows us to monitor installations at the PV-module level, giving detailed information regarding PV power-plant performance. The proposed monitoring system is based on the IEC-61724 standard requirements, as a flexible and ad hoc solution with relevant connectivity options. Meteorological and electrical data are collected from the developed nodes and available for subsequent analysis. Detailed information of the solution, as well as extensive results collected in Spanish PV power plants connected to the grid, are also included in the paper.https://www.mdpi.com/1996-1073/11/11/3051PV monitoringlow-cost solutionsrenewable energy source integration |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
José Miguel Paredes-Parra Antonio Mateo-Aroca Guillermo Silvente-Niñirola María C. Bueso Ángel Molina-García |
spellingShingle |
José Miguel Paredes-Parra Antonio Mateo-Aroca Guillermo Silvente-Niñirola María C. Bueso Ángel Molina-García PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and Assessment Energies PV monitoring low-cost solutions renewable energy source integration |
author_facet |
José Miguel Paredes-Parra Antonio Mateo-Aroca Guillermo Silvente-Niñirola María C. Bueso Ángel Molina-García |
author_sort |
José Miguel Paredes-Parra |
title |
PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and Assessment |
title_short |
PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and Assessment |
title_full |
PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and Assessment |
title_fullStr |
PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and Assessment |
title_full_unstemmed |
PV Module Monitoring System Based on Low-Cost Solutions: Wireless Raspberry Application and Assessment |
title_sort |
pv module monitoring system based on low-cost solutions: wireless raspberry application and assessment |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2018-11-01 |
description |
The integration of renewables into power systems has led to multiple studies and analysis in terms of grid-power quality, reliability, and/or feasibility. Among different resources to be considered as alternative energy systems, wind and solar emerge as the most mature technologies. With regard to photovoltaic (PV) installations, monitoring problems requires detailed analysis, since solar-radiation fluctuations, soiling on solar panels, or deficiency of PV-panel performance can involve unexpected power-output oscillations and, subsequently, undesirable power-generation oscillations. Under this framework, this paper describes and assesses a wireless low-cost PV-module monitoring system based on open-source solutions. Our proposal allows us to monitor installations at the PV-module level, giving detailed information regarding PV power-plant performance. The proposed monitoring system is based on the IEC-61724 standard requirements, as a flexible and ad hoc solution with relevant connectivity options. Meteorological and electrical data are collected from the developed nodes and available for subsequent analysis. Detailed information of the solution, as well as extensive results collected in Spanish PV power plants connected to the grid, are also included in the paper. |
topic |
PV monitoring low-cost solutions renewable energy source integration |
url |
https://www.mdpi.com/1996-1073/11/11/3051 |
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