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


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{
  "revision": 5, 
  "id": "1767", 
  "created": "2023-05-20T19:53:14.407541+00:00", 
  "metadata": {
    "doi": "10.24435/materialscloud:2j-f0", 
    "status": "published", 
    "title": "Curves data of a simple implicit method for parameters estimation of multi-junction solar cells", 
    "mcid": "2023.90", 
    "license_addendum": null, 
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        "description": "P_V curves data of the sub-cell InGaP at 25\u00b0C", 
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        "description": "P_V curves data of the sub-cell GaAs at 25\u00b0C", 
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        "description": "P_V curves data of the sub-cell Ge at 25\u00b0C", 
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      {
        "description": "P_V curves data of the triple junction solar cell InGaP/GaAs/Ge at 25\u00b0C", 
        "key": "MJ_PV_12.data", 
        "size": 20468, 
        "checksum": "md5:cc31f9ed9bb6c4605323aec50f369656"
      }, 
      {
        "description": "Read me", 
        "key": "Readme file.rtf", 
        "size": 2159, 
        "checksum": "md5:14b5ee77367b87f902f7779068cc992d"
      }
    ], 
    "owner": 1022, 
    "_oai": {
      "id": "oai:materialscloud.org:1767"
    }, 
    "keywords": [
      "Multiple Junction", 
      "Solar Energy", 
      "Parameter Extraction methods", 
      "I_V"
    ], 
    "conceptrecid": "1766", 
    "is_last": true, 
    "references": [
      {
        "type": "Journal reference", 
        "citation": "Y. Ait Oubella, , Y. Chaibib, L. Nouri, FE. Ihfa, R. Nassif, M. Bennai, Optical and Quantum Electronics (Submitted)"
      }
    ], 
    "publication_date": "Jun 08, 2023, 11:22:56", 
    "license": "Creative Commons Attribution 4.0 International", 
    "id": "1767", 
    "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.", 
    "version": 1, 
    "contributors": [
      {
        "email": "pr.physique.1017@gmail.com", 
        "affiliations": [
          "Faculty of Science Ben M'Sik, Hassan II University, Casablanca, Morocco"
        ], 
        "familyname": "Ait Oubella", 
        "givennames": "Youssef"
      }, 
      {
        "affiliations": [
          "Universite de Pau et des Pays de L\u2019Adour, E2S UPPA, SIAME, Pau, France"
        ], 
        "familyname": "Chaibi", 
        "givennames": "Yassine"
      }, 
      {
        "email": "nourileila1@yahoo.fr", 
        "affiliations": [
          "Faculty of Science Ben M'Sik, Hassan II University, Casablanca, Morocco"
        ], 
        "familyname": "Nouri", 
        "givennames": "Leila"
      }, 
      {
        "affiliations": [
          "Faculty of Science Ben M'Sik, Hassan II University, Casablanca, Morocco"
        ], 
        "familyname": "Ihfa", 
        "givennames": "Fatima Ezzahra"
      }, 
      {
        "affiliations": [
          "Faculty of Science Ben M'Sik, Hassan II University, Casablanca, Morocco"
        ], 
        "familyname": "Nassif", 
        "givennames": "Rachid"
      }, 
      {
        "email": "mdbennai@yahoo.fr", 
        "affiliations": [
          "Faculty of Science Ben M'Sik, Hassan II University, Casablanca, Morocco"
        ], 
        "familyname": "Bennai", 
        "givennames": "Mohamed"
      }
    ], 
    "edited_by": 576
  }, 
  "updated": "2023-06-08T09:22:56.427325+00:00"
}