QUANTUM-RESISTANT AUTHENTICATION AND KEY EXCHANGE PROTOCOL FOR SECURE IOT ARCHITECTURES

Authors

  • Dr. I. V. Prakash Author

DOI:

https://doi.org/10.64751/ijaei.12345678

Keywords:

Post-Quantum Cryptography; Quantum-Resistant Authentication; IoT Security; Key Exchange Protocol; Lattice-Based Cryptography; Hash-Based Authentication; Forward Secrecy; Lightweight Cryptography; Secure IoT Architectures.

Abstract

The rapid expansion of Internet of Things (IoT) ecosystems has introduced significant security challenges due to resource-constrained devices, heterogeneous network architectures, and largescale connectivity. Traditional authentication and key exchange mechanisms, primarily based on classical cryptographic algorithms such as RSA and ECC, are vulnerable to future quantum computing attacks. The emergence of quantum algorithms, particularly Shor’s algorithm, threatens the long-term confidentiality and integrity of IoT communications. This paper proposes a Quantum-Resistant Authentication and Key Exchange Protocol specifically designed for secure IoT architectures. The proposed framework integrates post-quantum cryptographic primitives, including lattice-based key exchange mechanisms and hash-based authentication schemes, optimized for low computational overhead suitable for constrained IoT devices. The protocol ensures mutual authentication, forward secrecy, and resistance against quantum adversaries while maintaining minimal communication latency. Security analysis demonstrates robustness against replay, man-in-the-middle, and key-compromise attacks. Performance evaluation shows that the proposed solution achieves a balance between quantum security strength and resource efficiency, making it suitable for next-generation IoT deployments in smart cities, healthcare systems, and industrial automation. 

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Published

2026-02-12

How to Cite

Dr. I. V. Prakash. (2026). QUANTUM-RESISTANT AUTHENTICATION AND KEY EXCHANGE PROTOCOL FOR SECURE IOT ARCHITECTURES. International Journal of AI EBioMedicine Innovations, 2(1), 9-16. https://doi.org/10.64751/ijaei.12345678