Results 81 to 90 of about 315 (122)
Using spatio-temporal graph neural networks to estimate fleet-wide photovoltaic performance degradation patterns. [PDF]
Fan Y +5 more
europepmc +1 more source
A comprehensive analysis of the emerging modern trends in research on photovoltaic systems and desalination in the era of artificial intelligence and machine learning. [PDF]
Jathar LD +12 more
europepmc +1 more source
Impact of Solar Cell Processing on LeTID in Crystalline Silicon
In this work, the process influences during solar cell production on the light and elevated temperature-induced degradation (LeTID) are explored. A special focus lies on the impact of state-of-the-art crystal growth by the Czochralski method with melt ...
Kamphues, Joshua
core
LeTID Temperature-Coefficient and Kinetic Dataset for Crystalline-Silicon Solar Cells
This dataset contains the numerical results generated for the study of light- and elevated-temperature-induced degradation (LeTID) and its influence on the temperature coefficients of crystalline-silicon solar cells. It includes a 416-point TCAD dataset covering 16 temperatures and 26 defect-density levels, together with the extracted temperature ...
openaire +1 more source
Process influences on LeTID in Ga-doped silicon
Light- and elevated temperature-induced degradation (LeTID), which can lead to significant module power loss in the field, has been extensively studied for boron (B)-doped silicon solar cells in the past.
Wolfram Kwapil +2 more
exaly +4 more sources
Impact of Hydrogen in Ga-Doped Silicon on Maximum LeTID Defect Density
Many studies suggest that hydrogen is an important factor for light and elevated temperature‐induced degradation (LeTID) in p‐type c‐Si solar cells. The exact mechanism of this defect is still unknown. Here, Ga‐doped Si wafers fired with an SiN x :H layer present were used to establish a correlation between the initial concentration of GaH pairs and ...
Jochen Simon, Axel Herguth, Giso Hahn
exaly +4 more sources
Abstract Light (and elevated Temperature) Induced Degradation (LeTID) can seriously limit the efficiency of mc-Si PERC solar cells if no countermeasures are taken. Within this paper, the subsequent regeneration reaction, also induced by light at elevated temperatures, is investigated systematically in the low intensity regime (up to 4 suns) as a ...
Christian Derricks +2 more
exaly +4 more sources

