Educational Blockchain: A Secure Degree Attestation and Verification Traceability Architecture for Higher Education Commission

Образовательный блокчейн: безопасная архитектура отслеживания аттестации и верификации дипломов для Комиссии по высшему образованию
Abdullah Ayub Khan, Asif Ali Laghari, Aftab Ahmed Shaikh, Sami Bourouis, Amir Madany Mamlouk, Hammam Alshazly
2021-11-18

Blockchain traceabilityDegree attestation verificationEducational blockchainHyperledger FabricPermissioned blockchain
Degree attestation verification and traceability are complex one-to-one processes between the Higher Education Commission (HEC) and universities. The procedure shifted to the digitalized manner, but still, on a certain note, manual authentication is required. In the initial process, the university verified the degree and stamp seal first. Then, a physical channel of degree submission to the receiving ends is activated. After that, the degree is attested while properly examining and analyzing the tamper records related to degree credentials through e-communication with the university for verification and validation. This issue poses a serious challenge to educational information integrity and privacy. Potentially, blockchain technology could become a standardized platform to perform tasks including issuing, verifying, auditing, and tracing immutable records, which would enable the HEC, universities, and Federal Education Ministry (FEM) to quickly and easily get attested and investigate the forge proof versions of certificates. Besides, decentralized distributed data blocks in chronological order provide high security between distributed ledgers, consensus engine, digital signature, smart contracts, permissioned application, and private network node transactions that guarantee degree record validation and traceability. This paper presents an architecture (HEDU-Ledger) and detail design of blockchain-enabled hyperledger fabric applications implementation for degree attestation verification and traceable direct channel design between HEC and universities. The hyperledger fabric endorses attestation records first, and then validates (committer) the degree and maintains the secure chain of tracing between stakeholder peer nodes. Furthermore, this HEDU-Ledger architecture avoids language and administrative barriers. It also provides robustness in terms of security and privacy of records and maintains integrity with secure preservation as compared to that of the other state-of-the-art methods.
1
HEDU-Ledger is intended to reduce manual authentication, support detection of forged credentials, and overcome language and administrative barriers.
2
Hyperledger Fabric endorses attestation records before validating degrees and preserving a secure trace across stakeholder peer nodes.
3
Permissioned ledgers, consensus mechanisms, digital signatures, smart contracts, and private network transactions are used to protect degree integrity, security, and privacy.
4
The architecture implements Hyperledger Fabric applications with a direct, traceable communication channel between higher-education stakeholders.
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The paper proposes HEDU-Ledger, a blockchain-based architecture for degree attestation, verification, auditing, and traceability between HEC and universities.

Higher-education degree attestation records and their verification workflow between the Higher Education Commission and universities

Secure, privacy-preserving blockchain-based validation, traceability, and integrity of degree credentials

Publication Details
Publication Date
2021-11-18
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Authors
Abdullah Ayub Khan
Asif Ali Laghari
Aftab Ahmed Shaikh
Sami Bourouis
Amir Madany Mamlouk
Hammam Alshazly
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