Jul 2026· International Journal for Research in Applied Science and Engineering Technology· Vol 14, pp. 524-531· 0 citations
TL;DR
The paper summarizes the recent progress in post-quantum secure SDN in cloud and edge computing and reviews recent advances, summarizes research challenges, and points towards scalable, autonomous, and quantum-resistant networking infrastructures for next-generation cloud, IoT, edge and 6G networks and ecosystem.
Abstract
Conventional cryptographic algorithms that are widely used in Software-Defined Networking (SDN), cloud computing,
and edge computing infrastructures are facing a serious challenge because of the fast development of quantum computing. The
traditional public-key cryptography like RSA and Elliptic Curve Cryptography (ECC) is believed to be vulnerable to quantum
attacks, which will require quantum-resistant security mechanisms to be adopted. The past few years have seen a focus on
incorporating Post-Quantum Cryptography (PQC), Quantum Key Distribution (QKD), Artificial Intelligence (AI), blockchain,
and Zero Trust Architecture (ZTA) into SDN, with the aim of creating secure, programmable, and intelligent communication
infrastructures. The paper summarizes the recent progress in post-quantum secure SDN in cloud and edge computing. The study
starts by examining how lattice-based cryptographic algorithms like CRYSTALS-Kyber and CRYSTALS-Dilithium can be
integrated in SDN controllers and SDN programmable networks. Then, hybrid QKD-PQC architectures for quantum-safe
communication are discussed, followed by intelligent SDN architectures based on AI-powered threat detection, blockchain-based
trust management, and adaptive cryptographic orchestration. Moreover, the paper reviews recent advances, summarizes research
challenges, and points towards scalable, autonomous, and quantum-resistant networking infrastructures for next-generation
cloud, IoT, edge and 6G networks and ecosystem
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