Investigating defects and annual degradation in UK solar PV installations through thermographic and electroluminescent surveys
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[1] Thomas G. Allen,et al. Potential-induced degradation in perovskite/silicon tandem photovoltaic modules , 2022, Cell Reports Physical Science.
[2] Junsin Yi,et al. Prediction of Power Output from a Crystalline Silicon Photovoltaic Module with Repaired Cell-in-Hotspots , 2022, Electronics.
[3] Andy M. Tyrrell,et al. Inequalities in photovoltaics modules reliability: From packaging to PV installation site , 2022, Renewable Energy.
[4] A. Buckley,et al. The uncertainties involved in measuring national solar photovoltaic electricity generation , 2022, Renewable and Sustainable Energy Reviews.
[5] M. Dhimish,et al. Power loss and hotspot analysis for photovoltaic modules affected by potential induced degradation , 2022, npj Materials Degradation.
[6] P. Lazaridis,et al. An empirical investigation on the correlation between solar cell cracks and hotspots , 2021, Scientific Reports.
[7] Rajesh Gupta,et al. Novel Quantitative Electroluminescence Method for Detailed Performance Analysis of PID-s Affected Crystalline Silicon PV Module , 2021, IEEE Journal of Photovoltaics.
[8] A. Masuda,et al. Potential‐induced degradation in high‐efficiency n‐type crystalline‐silicon photovoltaic modules: A literature review , 2021, Solar RRL.
[9] D. Moser,et al. Performance Analysis and Degradation of a Large Fleet of PV Systems , 2021, IEEE Journal of Photovoltaics.
[10] Rajesh Gupta,et al. Impact of cracks on crystalline silicon photovoltaic modules temperature distribution , 2021 .
[11] Henrik Davidsson,et al. Historical building renovation and PV optimisation towards NetZEB in Sweden , 2021, Solar Energy.
[12] Mahmoud Dhimish,et al. Investigating the Impact of Cracks on Solar Cells Performance: Analysis Based on Nonuniform and Uniform Crack Distributions , 2021, IEEE Transactions on Industrial Informatics.
[13] Dahai Qi,et al. A state-of-the-art review of fire safety of photovoltaic systems in buildings , 2021, Journal of Cleaner Production.
[14] Hidefumi Akiyama,et al. Adaptive automatic solar cell defect detection and classification based on absolute electroluminescence imaging , 2021 .
[15] H. te Heesen,et al. Performance of roof-top PV systems in selected European countries from 2012 to 2019 , 2021 .
[16] Javier Munoz,et al. An MPPT Strategy Based on a Surface-Based Polynomial Fitting for Solar Photovoltaic Systems Using Real-Time Hardware , 2021, Electronics.
[17] Shengxue Tang,et al. Review and a novel strategy for mitigating hot spot of PV panels , 2021 .
[18] Muhammad Umair Ali,et al. A machine learning framework to identify the hotspot in photovoltaic module using infrared thermography , 2020, Solar Energy.
[19] Mahmoud Dhimish,et al. Insights on the Degradation and Performance of 3000 Photovoltaic Installations of Various Technologies Across the United Kingdom , 2020, IEEE Transactions on Industrial Informatics.
[20] Ting Luo,et al. Automatic hotspots detection based on UAV infrared images for large‐scale PV plant , 2020, Electronics Letters.
[21] P. Hacke,et al. Failure analysis of field‐failed bypass diodes , 2020, Progress in Photovoltaics: Research and Applications.
[22] M. Dhimish,et al. Performance Ratio and Degradation Rate Analysis of 10-Year Field Exposed Residential Photovoltaic Installations in the UK and Ireland , 2020, Clean Technologies.
[23] Mahmoud Dhimish,et al. A Comprehensive Review on Bypass Diode Application on Photovoltaic Modules , 2020, Energies.
[24] G. Eder,et al. Review: Ultraviolet Fluorescence as Assessment Tool for Photovoltaic Modules , 2020, IEEE Journal of Photovoltaics.
[25] W. D. Ceuninck,et al. Physics of potential-induced degradation in bifacial p-PERC solar cells , 2019, Solar Energy Materials and Solar Cells.
[26] F. Liu,et al. Rapid diagnosis of hot spot failure of crystalline silicon PV module based on I-V curve , 2019, Microelectronics Reliability.
[27] Violeta Holmes,et al. Evaluating Power Loss and Performance Ratio of Hot-Spotted Photovoltaic Modules , 2018, IEEE Transactions on Electron Devices.
[28] Takumi Takashima,et al. Behavior of Interconnect-Failed PV Modules Under Standard Test Conditions and Actual Operation Conditions , 2018, IEEE Journal of Photovoltaics.
[29] Oscar Duque-Perez,et al. Technological review of the instrumentation used in aerial thermographic inspection of photovoltaic plants , 2018, Renewable and Sustainable Energy Reviews.
[30] J. John,et al. Estimating degradation rates from 27 different PV modules installed in desert conditions using the NREL/Rdtools , 2018, 2018 IEEE 7th World Conference on Photovoltaic Energy Conversion (WCPEC) (A Joint Conference of 45th IEEE PVSC, 28th PVSEC & 34th EU PVSEC).
[31] J. Gagné. Literature Review , 2018, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[32] Jonathan Leloux,et al. Performance of Distributed PV in the UK: a Statistical Analysis of over 7000 Systems , 2015 .
[33] Joanne Mun-Yee Lim,et al. Artificial Intelligence Based MPPT Techniques for Solar Power System: A review , 2020, Journal of Modern Power Systems and Clean Energy.
[34] Robert C. Wolpert,et al. A Review of the , 1985 .