Blockchain-Based Digital Identity Framework for Trusted e-Governance

  • Authors

    • Narendra Karmarkar Mathematician and Computer Scientist, Tata Institute of Fundamental Research, India Author

    DOI:

    https://doi.org/10.67228/30715628/IJMIET-2024PII0M8Z

    Published 08-04-2024

  • Blockchain, Digital Identity, E-Governance, Distributed Ledger Technology, Smart Contracts, Identity Verification, Decentralized Identity, Cryptography, Cybersecurity, Digital Government

    Issue

    Section

    Articles

    How to Cite

    [1]
    N. Karmarkar, “Blockchain-Based Digital Identity Framework for Trusted e-Governance”, ijmiet, vol. 7, no. 2, pp. 01–15, Aug. 2024, doi: 10.67228/30715628/IJMIET-2024PII0M8Z.
  • Abstract

    The digitalization of government services has increased the efficiency, accessibility and transparency of public administration, with an impact on the speed of change. Government service digitalization has increased the efficiency, accessibility and transparency of public administration, which affects the speed of change. But traditional digital identity management systems still have a lot of issues to overcome, such as centralised data storage, identity theft, unauthorised access, data tampering, privacy breach, and inadequate interoperability between government departments. These issues erode citizens' confidence and affect the safe and secure service delivery of e-Governance. A decentralized, immutable, transparent and cryptographically secure platform for identity management has emerged in the form of blockchain technology. Blockchain-based digital identities give citizens more control over their personal data and allow existing governments to provide secure digital identities and trusted authentication for information sharing between governments and individuals. The paper provides a detailed research on Blockchain-Enabled Identity Systems for Secure e-Governance by exploring various aspects of blockchain-based identity systems, including technologies, components, authentication mechanisms, and security features, which contribute to secure e-governance. The proposed framework combines Distributed Ledger Technology (DLT), smart contracts, cryptographic verification, permissioned blockchain networks, and decentralized identity management to create a secure identity infrastructure for public service delivery. Additionally, the paper explores the opportunities and prospects of blockchain for improving data integrity, transparency, accountability, and efficiency, and curbing fraud and administrative burden. The proposed framework clearly shows how a blockchain-based identity system can play a significant role in strengthening citizen-centric governance, especially when it comes to improving authentication accuracy, safeguarding sensitive information, simplifying the cross-departmental verification of citizens' identities, and enabling secure digital transformation initiatives within modern governments.

  • References

    [1] S. Nakamoto, Bitcoin: A Peer-to-Peer Electronic Cash System, White Paper, 2008.

    [2] M. Swan, Blockchain: Blueprint for a New Economy. Sebastopol, CA, USA: O'Reilly Media, 2015.

    [3] A. Dorri, S. S. Kanhere, and R. Jurdak, "Blockchain in internet of things: Challenges and solutions," arXiv preprint arXiv:1608.05187, 2016.

    [4] M. Alizadeh, M. Zamani, J. B. Joshi, and R. Safavi-Naini, "Privacy-preserving identity management using blockchain technology," Future Generation Computer Systems, vol. 102, pp. 102–114, 2020.

    [5] C. Allen, "The Path to Self-Sovereign Identity," Life With Alacrity, 2016.

    [6] D. Reed, M. Sporny, C. Allen, D. Longley, and C. Sabadello, "Decentralized Identifiers (DIDs) v1.0," W3C Recommendation, 2022.

    [7] M. Sporny, D. Longley, and D. Chadwick, "Verifiable Credentials Data Model 1.1," W3C Recommendation, 2022.

    [8] K. Christidis and M. Devetsikiotis, "Blockchains and smart contracts for the Internet of Things," IEEE Access, vol. 4, pp. 2292–2303, 2016.

    [9] M. Conti, S. Kumar, C. Lal, and S. Ruj, "A survey on security and privacy issues of blockchain technology," IEEE Communications Surveys & Tutorials, vol. 20, no. 4, pp. 3416–3452, 2018.

    [10] Z. Zheng, S. Xie, H. Dai, X. Chen, and H. Wang, "Blockchain challenges and opportunities: A survey," International Journal of Web and Grid Services, vol. 14, no. 4, pp. 352–375, 2018.

    [11] T. Hardjono and A. Pentland, "Verifiable Anonymous Identities and Access Control in Permissioned Blockchains," MIT Connection Science, Cambridge, MA, USA, Tech. Rep., 2019.

    [12] A. Tobin and D. Reed, The Essential Guide to Self-Sovereign Identity. Decentralized Identity Foundation, 2017.

    [13] A. Shrier, W. Wu, and A. Pentland, "Blockchain and Identity," MIT Connection Science, White Paper, 2016.

    [14] Y. Liu, K. Zhang, and Y. Yang, "Blockchain-based identity management systems: A review," IEEE Access, vol. 9, pp. 121623–121646, 2021.

    [15] X. Xu, I. Weber, and M. Staples, Architecture for Blockchain Applications. Cham, Switzerland: Springer, 2019.

    [16] Gajula, S. (2023). A review of anomaly identification in finance frauds using machine learning system. International Journal of Current Engineering and Technology, 13(6), 568–575. https://ijcet.evegenis.org/index.php/ijcet/article/view/820

  • Downloads

Similar Articles

21-30 of 64

You may also start an advanced similarity search for this article.