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Microinverter Thermal Performance in the Real-World: Measurements and Modeling

Real-world performance, durability and reliability of microinverters are critical concerns for microinverter-equipped photovoltaic systems. We conducted a data-driven study of the thermal performance of 24 new microinverters (Enphase M215) connected to 8 different brands of PV modules on dual-axis t...

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Autores principales: Hossain, Mohammad Akram, Xu, Yifan, Peshek, Timothy J., Ji, Liang, Abramson, Alexis R., French, Roger H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4493157/
https://www.ncbi.nlm.nih.gov/pubmed/26147339
http://dx.doi.org/10.1371/journal.pone.0131279
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author Hossain, Mohammad Akram
Xu, Yifan
Peshek, Timothy J.
Ji, Liang
Abramson, Alexis R.
French, Roger H.
author_facet Hossain, Mohammad Akram
Xu, Yifan
Peshek, Timothy J.
Ji, Liang
Abramson, Alexis R.
French, Roger H.
author_sort Hossain, Mohammad Akram
collection PubMed
description Real-world performance, durability and reliability of microinverters are critical concerns for microinverter-equipped photovoltaic systems. We conducted a data-driven study of the thermal performance of 24 new microinverters (Enphase M215) connected to 8 different brands of PV modules on dual-axis trackers at the Solar Durability and Lifetime Extension (SDLE) SunFarm at Case Western Reserve University, based on minute by minute power and thermal data from the microinverters and PV modules along with insolation and environmental data from July through October 2013. The analysis shows the strengths of the associations of microinverter temperature with ambient temperature, PV module temperature, irradiance and AC power of the PV systems. The importance of the covariates are rank ordered. A multiple regression model was developed and tested based on stable solar noon-time data, which gives both an overall function that predicts the temperature of microinverters under typical local conditions, and coefficients adjustments reecting refined prediction of the microinverter temperature connected to the 8 brands of PV modules in the study. The model allows for prediction of internal temperature for the Enphase M215 given similar climatic condition and can be expanded to predict microinverter temperature in fixed-rack and roof-top PV systems. This study is foundational in that similar models built on later stage data in the life of a device could reveal potential influencing factors in performance degradation.
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spelling pubmed-44931572015-07-15 Microinverter Thermal Performance in the Real-World: Measurements and Modeling Hossain, Mohammad Akram Xu, Yifan Peshek, Timothy J. Ji, Liang Abramson, Alexis R. French, Roger H. PLoS One Research Article Real-world performance, durability and reliability of microinverters are critical concerns for microinverter-equipped photovoltaic systems. We conducted a data-driven study of the thermal performance of 24 new microinverters (Enphase M215) connected to 8 different brands of PV modules on dual-axis trackers at the Solar Durability and Lifetime Extension (SDLE) SunFarm at Case Western Reserve University, based on minute by minute power and thermal data from the microinverters and PV modules along with insolation and environmental data from July through October 2013. The analysis shows the strengths of the associations of microinverter temperature with ambient temperature, PV module temperature, irradiance and AC power of the PV systems. The importance of the covariates are rank ordered. A multiple regression model was developed and tested based on stable solar noon-time data, which gives both an overall function that predicts the temperature of microinverters under typical local conditions, and coefficients adjustments reecting refined prediction of the microinverter temperature connected to the 8 brands of PV modules in the study. The model allows for prediction of internal temperature for the Enphase M215 given similar climatic condition and can be expanded to predict microinverter temperature in fixed-rack and roof-top PV systems. This study is foundational in that similar models built on later stage data in the life of a device could reveal potential influencing factors in performance degradation. Public Library of Science 2015-07-06 /pmc/articles/PMC4493157/ /pubmed/26147339 http://dx.doi.org/10.1371/journal.pone.0131279 Text en © 2015 Hossain et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hossain, Mohammad Akram
Xu, Yifan
Peshek, Timothy J.
Ji, Liang
Abramson, Alexis R.
French, Roger H.
Microinverter Thermal Performance in the Real-World: Measurements and Modeling
title Microinverter Thermal Performance in the Real-World: Measurements and Modeling
title_full Microinverter Thermal Performance in the Real-World: Measurements and Modeling
title_fullStr Microinverter Thermal Performance in the Real-World: Measurements and Modeling
title_full_unstemmed Microinverter Thermal Performance in the Real-World: Measurements and Modeling
title_short Microinverter Thermal Performance in the Real-World: Measurements and Modeling
title_sort microinverter thermal performance in the real-world: measurements and modeling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4493157/
https://www.ncbi.nlm.nih.gov/pubmed/26147339
http://dx.doi.org/10.1371/journal.pone.0131279
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