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June 3, 2026PLoS ONE0 citationsOpen Access

Security enhancement using scalable Blockchain-based Multi-Factor Authentication (BMFA)

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FRFahad RahmanAFAreej FatimaMHMuhammad Hassan

Key Points

  • This research aims to enhance online security through a novel Blockchain-based Multifactor Authentication (BMFA) system.
  • Introduced a blockchain infrastructure for multifactor authentication
  • Evaluated system performance through analytical and simulation methods
  • Assessed load-balancing capabilities under high-demand conditions.
  • BMFA reduces single points of failure and enhances data integrity through cryptographic mechanisms.
  • Showed improved load-balancing capabilities compared to traditional MFA approaches.
  • Demonstrated resilience improvements, although results are based on simulations and analytical evaluations.

Abstract

As digital interactions continue to expand, securing online systems has become a fundamental priority. Multifactor authentication (MFA) plays a pivotal role in modern cybersecurity frameworks. Traditional approaches often exhibit weaknesses such as centralized vulnerabilities and limited adaptability to emerging threats. To address these concerns, this research introduces a novel Blockchain- based Multifactor Authentication (BMFA) system that enhances security, resilience, and scalability. This study provides an in-depth exploration of BMFA’s conceptual architecture, operational mechanisms, and potential applications. By decentralizing authentication processes, BMFA reduces single points of failure and fortifies data integrity through cryptographic safeguards. Unlike conventional models, this approach distributes authentication data across multiple blockchain nodes. This reduces the risk of breaches while ensuring continuous availability. Moreover, BMFA improves user privacy via distributed consensus, minimizing dependency on centralized authentication servers. The proposed system demonstrates enhanced load-balancing (LB)capabilities. This makes it more suitable for high-demand environments as compared to existing MFA methods. The proposed system demonstrates improved load-balancing behavior under simulated conditions and distributes authentication verification across multiple nodes. The results indicate potential resilience improvements compared with centralized MFA approaches. However, the findings are based on analytical and simulation evaluation, and real-world deployment assessment remains future work.

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Cite This Study

Rahman et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc49adee9eb8c0dce6214https://doi.org/10.1371/journal.pone.0348353
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