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Cite this DOI

10.46243/jst.2024.v9.i1.pp21-29 · A Fernet Based Lightweight Cryptography Adopted Enhancing Certificate Validation through Blockchain Technology

APA (7th edition)

K. Obulesh, K. O. (2024). A Fernet Based Lightweight Cryptography Adopted Enhancing Certificate Validation through Blockchain Technology. *Journal of Science & Technology*, *9*(1), 21–29. https://doi.org/10.46243/jst.2024.v9.i1.pp21-29

⬇ text Italics are shown as *asterisks* in plain text — the journal or book title and the volume.

BibTeX

@article{kobulesh2024fernet,
  author    = {K. Obulesh, K. Obulesh},
  title     = {{A Fernet Based Lightweight Cryptography Adopted Enhancing Certificate Validation through Blockchain Technology}},
  journal   = {Journal of Science \& Technology},
  year      = {2024},
  month     = {jan},
  volume    = {9},
  number    = {1},
  pages     = {21--29},
  publisher = {Longman Publishers},
  issn      = {2456-5660},
  doi       = {10.46243/jst.2024.v9.i1.pp21-29},
  url       = {https://doi.org/10.46243/jst.2024.v9.i1.pp21-29},
  language  = {en},
  abstract  = {Certificate forgery has become a pervasive issue, necessitating a transformative approach to validation processes. The limitations of traditional methods have prompted the exploration of cutting-edge technologies, with blockchain emerging as a promising solution. The conventional system relies on manual verification processes that are time-consuming, opaque, and prone to fraudulent activities. Physical examination of paper-based certificates and reliance on centralized databases make the system vulnerable to tampering and counterfeiting. The drawbacks of the current system include its susceptibility to data manipulation, lack of transparency, and inefficiency. This section critically evaluates the shortcomings of traditional certificate validation methods, setting the stage for the proposed blockchain-based solution.The proposed system leverages blockchain technology, specifically implementing the Fernet Based Lightweight Cryptography (Fernet-LWC) algorithm, to enhance the security and efficiency of certificate validation. The Fernet-LWC algorithm offers cryptographic protection, ensuring the integrity and confidentiality of certificate data. The blockchain’s decentralized nature eliminates the need for a central authority, reducing the risk of data manipulation and fostering trust in the validation process. Each certificate issuance is securely recorded on the blockchain, creating an immutable and transparent trail. This section delves into the technical aspects of the proposed system, providing a detailed explanation of how the Fernet-LWC algorithm ensures data security and integrity. A comprehensive analysis of the proposed system’s architecture and implementation details is presented. This includes the integration of the Fernet-LWC algorithm into the blockchain framework, ensuring a secure and efficient certificate validation process. The system’s components, their interactions, and the underlying cryptographic mechanisms are elucidated, providing a clear understanding of how the proposed solution operates}
}

⬇ .bib

RIS (EndNote, Zotero, Mendeley)

TY  - JOUR
TI  - A Fernet Based Lightweight Cryptography Adopted Enhancing Certificate Validation through Blockchain Technology
AU  - K. Obulesh, K. Obulesh
JO  - Journal of Science & Technology
PY  - 2024
DA  - 2024/01/25/
VL  - 9
IS  - 1
SP  - 21
EP  - 29
PB  - Longman Publishers
SN  - 2456-5660
LA  - en
AB  - Certificate forgery has become a pervasive issue, necessitating a transformative approach to validation processes. The limitations of traditional methods have prompted the exploration of cutting-edge technologies, with blockchain emerging as a promising solution. The conventional system relies on manual verification processes that are time-consuming, opaque, and prone to fraudulent activities. Physical examination of paper-based certificates and reliance on centralized databases make the system vulnerable to tampering and counterfeiting. The drawbacks of the current system include its susceptibility to data manipulation, lack of transparency, and inefficiency. This section critically evaluates the shortcomings of traditional certificate validation methods, setting the stage for the proposed blockchain-based solution.The proposed system leverages blockchain technology, specifically implementing the Fernet Based Lightweight Cryptography (Fernet-LWC) algorithm, to enhance the security and efficiency of certificate validation. The Fernet-LWC algorithm offers cryptographic protection, ensuring the integrity and confidentiality of certificate data. The blockchain’s decentralized nature eliminates the need for a central authority, reducing the risk of data manipulation and fostering trust in the validation process. Each certificate issuance is securely recorded on the blockchain, creating an immutable and transparent trail. This section delves into the technical aspects of the proposed system, providing a detailed explanation of how the Fernet-LWC algorithm ensures data security and integrity. A comprehensive analysis of the proposed system’s architecture and implementation details is presented. This includes the integration of the Fernet-LWC algorithm into the blockchain framework, ensuring a secure and efficient certificate validation process. The system’s components, their interactions, and the underlying cryptographic mechanisms are elucidated, providing a clear understanding of how the proposed solution operates
DO  - 10.46243/jst.2024.v9.i1.pp21-29
UR  - https://doi.org/10.46243/jst.2024.v9.i1.pp21-29
ER  -

⬇ .ris

CSL-JSON

{
    "type": "article-journal",
    "id": "10.46243/jst.2024.v9.i1.pp21-29",
    "DOI": "10.46243/jst.2024.v9.i1.pp21-29",
    "URL": "https://doi.org/10.46243/jst.2024.v9.i1.pp21-29",
    "title": "A Fernet Based Lightweight Cryptography Adopted Enhancing Certificate Validation through Blockchain Technology",
    "source": "Smart Scholars DOI Registry",
    "container-title": "Journal of Science & Technology",
    "author": [
        {
            "family": "K. Obulesh",
            "given": "K. Obulesh"
        }
    ],
    "issued": {
        "date-parts": [
            [
                2024,
                1,
                25
            ]
        ]
    },
    "volume": "9",
    "issue": "1",
    "page": "21-29",
    "publisher": "Longman Publishers",
    "language": "en",
    "abstract": "Certificate forgery has become a pervasive issue, necessitating a transformative approach to validation processes. The limitations of traditional methods have prompted the exploration of cutting-edge technologies, with blockchain emerging as a promising solution. The conventional system relies on manual verification processes that are time-consuming, opaque, and prone to fraudulent activities. Physical examination of paper-based certificates and reliance on centralized databases make the system vulnerable to tampering and counterfeiting. The drawbacks of the current system include its susceptibility to data manipulation, lack of transparency, and inefficiency. This section critically evaluates the shortcomings of traditional certificate validation methods, setting the stage for the proposed blockchain-based solution.The proposed system leverages blockchain technology, specifically implementing the Fernet Based Lightweight Cryptography (Fernet-LWC) algorithm, to enhance the security and efficiency of certificate validation. The Fernet-LWC algorithm offers cryptographic protection, ensuring the integrity and confidentiality of certificate data. The blockchain’s decentralized nature eliminates the need for a central authority, reducing the risk of data manipulation and fostering trust in the validation process. Each certificate issuance is securely recorded on the blockchain, creating an immutable and transparent trail. This section delves into the technical aspects of the proposed system, providing a detailed explanation of how the Fernet-LWC algorithm ensures data security and integrity. A comprehensive analysis of the proposed system’s architecture and implementation details is presented. This includes the integration of the Fernet-LWC algorithm into the blockchain framework, ensuring a secure and efficient certificate validation process. The system’s components, their interactions, and the underlying cryptographic mechanisms are elucidated, providing a clear understanding of how the proposed solution operates",
    "ISSN": "2456-5660"
}

⬇ .json What citeproc and reference managers read; the DOI system hands it out for Accept: application/vnd.citationstyles.csl+json, and so does this registry's resolver.

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