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Curves data of a simple implicit method for parameters estimation of multi-junction solar cells

Youssef Ait Oubella1*, Yassine Chaibi2, Leila Nouri1*, Fatima Ezzahra Ihfa1, Rachid Nassif1, Mohamed Bennai1*

1 Faculty of Science Ben M'Sik, Hassan II University, Casablanca, Morocco

2 Universite de Pau et des Pays de L’Adour, E2S UPPA, SIAME, Pau, France

* Corresponding authors emails: pr.physique.1017@gmail.com, nourileila1@yahoo.fr, mdbennai@yahoo.fr
DOI10.24435/materialscloud:2j-f0 [version v1]

Publication date: Jun 08, 2023

How to cite this record

Youssef Ait Oubella, Yassine Chaibi, Leila Nouri, Fatima Ezzahra Ihfa, Rachid Nassif, Mohamed Bennai, Curves data of a simple implicit method for parameters estimation of multi-junction solar cells, Materials Cloud Archive 2023.90 (2023), https://doi.org/10.24435/materialscloud:2j-f0

Description

Multi-junction solar cells pose a particular modeling challenge, and advanced methods are needed to improve their efficiency and reduce their cost. We present here data about the I-V and P-V characteristics gotten using the electrical parameters obtained through an easy method to extract the electrical parameters of multi-junction solar cells using a single-diode model. The proposed technique is based solely on manufacturer data, and we solve the necessary mathematical equations numerically.

Materials Cloud sections using this data

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Files

File name Size Description
InGaP_IV.data
MD5md5:84aa9adb0c2412eb850cddd66ddc7889
20.0 KiB I_V curves data of the sub-cell InGaP at 28°C and 1350 W/m²
GaAS_IV.data
MD5md5:cba7feb9ac1e4365bd9a0bc9205072ed
20.0 KiB I_V curves data of the sub-cell GaAs at 28°C and 1350 W/m²
Ge_IV.data
MD5md5:0fee52b23e9d6c3871db1d64359ffa67
20.0 KiB I_V curves data of the sub-cell Ge at 28°C and 1350 W/m²
MJ_IV.data
MD5md5:6d4c1b7b1d090ffebf9ffd53832a91e2
20.0 KiB I_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 28°C and 1350 W/m²
InGaP_PV.data
MD5md5:ababd495c3c31b358424fe2ed1062346
20.0 KiB P_V curves data of the sub-cell InGaP at 28°C and 1350 W/m²
GaAS_PV.data
MD5md5:fc83d90f7e8aeab3f5385c612ff24a56
20.0 KiB P_V curves data of the sub-cell GaAs at 28°C and 1350 W/m²
Ge_PV.data
MD5md5:f35c147de74efa46938ee0e04a089431
20.0 KiB P_V curves data of the sub-cell Ge at 28°C and 1350 W/m²
MJ_PV.data
MD5md5:fc83d90f7e8aeab3f5385c612ff24a56
20.0 KiB P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 28°C and 1350 W/m²
IV_T=-80°C.data
MD5md5:28e0db26da9933e478197b7ca4617cee
20.0 KiB I_V curves data of the triple junction solar cell InGaP/GaAs/Ge at -80°C and 1350 W/m²
IV_T=-50.data
MD5md5:5c84c526684561b7fe7c93519af7827e
20.0 KiB I_V curves data of the triple junction solar cell InGaP/GaAs/Ge at -50°C and 1350 W/m²
IV_T=0.data
MD5md5:13033e43fe0a94a3df1caf3ca146de19
20.0 KiB I_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 0°C and 1350 W/m²
IV_T=50.data
MD5md5:5e5c7b7fe5893194e10cbd84d3801085
20.0 KiB I_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 50°C and 1350 W/m²
IV_T=90.data
MD5md5:757b2f911d5548d1687866a33c2d4dee
20.0 KiB I_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 90°C and 1350 W/m²
PV_T=-80°C.data
MD5md5:40e0050d4405ecaa91564ea73e4622a9
20.0 KiB P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at -80°C and 1350 W/m²
PV_T=-50.data
MD5md5:9b717ecbbdd9db0059cc2f452ee09a73
20.0 KiB P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at -50°C and 1350 W/m²
PV_T=0.data
MD5md5:7de72eaed042dd3b50b2241bc575ea13
20.0 KiB P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 0°C and 1350 W/m²
PV_T=50.data
MD5md5:84252b9906d378ae5925f3d71709078d
20.0 KiB P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 50°C and 1350 W/m²
PV_T=90.data
MD5md5:2769dd0fdfb51168b9c4d273d84bcee4
20.0 KiB P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 90°C and 1350 W/m²
InGaP_IV_11.data
MD5md5:78500861e0fe82bd031d98da53601203
20.0 KiB I_V curves data of the sub-cell InGaP at 25°C
GaAS_IV_11.data
MD5md5:0151fe3538000558ea137499e4ec8621
20.0 KiB I_V curves data of the sub-cell GaAs at 25°C
Ge_IV_11.data
MD5md5:da569795d8b6c477824265713316937d
20.0 KiB I_V curves data of the sub-cell Ge at 25°C
MJ_IV_11.data
MD5md5:71f1fd294c9089e0de74ea213014a734
20.0 KiB I_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 25°C
InGaP_PV_12.data
MD5md5:5f784b08f556538ce151f24179c61493
20.0 KiB P_V curves data of the sub-cell InGaP at 25°C
GaAS_PV_12.data
MD5md5:cc31f9ed9bb6c4605323aec50f369656
20.0 KiB P_V curves data of the sub-cell GaAs at 25°C
Ge_PV_12.data
MD5md5:15b893d3f9163965f54640f3eafd0220
20.0 KiB P_V curves data of the sub-cell Ge at 25°C
MJ_PV_12.data
MD5md5:cc31f9ed9bb6c4605323aec50f369656
20.0 KiB P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 25°C
Readme file.rtf
MD5md5:14b5ee77367b87f902f7779068cc992d
2.1 KiB Read me

License

Files and data are licensed under the terms of the following license: Creative Commons Attribution 4.0 International.
Metadata, except for email addresses, are licensed under the Creative Commons Attribution Share-Alike 4.0 International license.

External references

Journal reference
Y. Ait Oubella, , Y. Chaibib, L. Nouri, FE. Ihfa, R. Nassif, M. Bennai, Optical and Quantum Electronics (Submitted)

Keywords

Multiple Junction Solar Energy Parameter Extraction methods I_V

Version history:

2023.90 (version v1) [This version] Jun 08, 2023 DOI10.24435/materialscloud:2j-f0