Big Data Analytics-Envisioned Quantum-Safe Lattice-Based Three-Party Authenticated Key Agreement Protocol for Cloud IoT-Enabled Healthcare Applications

  • Bagchi, Prithwi; 
  • Roy, Aakash; 
  • Wazid, Mohammad; 
  • Das, Ashok Kumar; 
  • Bhargava, Bharat K.; 
  • ... Park, Young Ho
Citations

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4
Citations

SCOPUS

5

초록

Cloud-based Internet of Things (IoT)-enabled smart healthcare plays a vital role in modern society, yet security and privacy challenges remain unavoidable. The authenticated key agreement (AKA) process, which serves as the foundation of secure communication, is widely recognized as a key solution to these challenges. However, many existing AKA methods in the literature either involve high communication and computational costs or fail to withstand quantum attacks. Post-quantum cryptography (PQC) introduces a new class of cryptographic algorithms designed to resist future quantum computer threats. In this article, we present a quantum-secure, lattice-based three-party AKA scheme for smart IoT healthcare applications, leveraging the computationally complex Ring-Learning With Errors (Ring-LWE) problem. Our approach integrates secure big-data analytics with blockchain technology by utilizing authentication procedures for secure data aggregation before storing it in the blockchain. A comprehensive security evaluation including formal and informal analysis, demonstrates the scheme's strong resilience against both classical and quantum attacks. Additionally, experimental results confirm that the proposed scheme is well-suited for real-time smart healthcare applications. © 2004-2012 IEEE.

키워드

blockchain; Internet of Things (IoT); key agreement; lattice; post-quantum security; smart healthcare; three-party authentication; SIGNATURE SCHEME; SECURITY; INTERNET
제목
Big Data Analytics-Envisioned Quantum-Safe Lattice-Based Three-Party Authenticated Key Agreement Protocol for Cloud IoT-Enabled Healthcare Applications
저자
Bagchi, Prithwi; Roy, Aakash; Wazid, Mohammad; Das, Ashok Kumar; Bhargava, Bharat K.; Park, Young Ho
DOI
10.1109/TDSC.2025.3605524
발행일
2026-01
유형
Article
저널명
IEEE Transactions on Dependable and Secure Computing
권
23
호
1
페이지
368 ~ 385