2021· International Journal of Modern Research in Science & Engineering· 0 citations
TL;DR
This paper provides a comprehensive examination of post-quantum cryptographic algorithms and their applicability in distributed system architectures and proposes best practices and future directions for secure, quantum-resilient distributed systems.
Abstract
The rapid advancement of quantum computing poses a critical threat to classical cryptographic schemes that secure modern distributed systems. As the deployment of distributed infrastructures—including blockchains, cloud-native applications, and edge networks—continues to grow, there is an urgent need to transition towards quantum-resistant security mechanisms. This paper provides a comprehensive examination of post-quantum cryptographic (PQC) algorithms and their applicability in distributed system architectures. We analyze the impact of quantum threats on key components of distributed systems such as communication protocols, identity management, data integrity, and consensus mechanisms. Furthermore, we evaluate current NIST-standardized PQC algorithms in terms of computational efficiency, scalability, and integration overhead within distributed environments. Challenges in key management, performance trade-offs, and implementation considerations are discussed. Finally, we propose best practices and future directions for secure, quantum-resilient distributed systems.
The emergence of the Quantum computing technologies is imposing greater threats on the existing cryptographic algorithms that rely heavily on the mathematical problems, creating a growing demand for quantum safe Communication. Even though Quantum Key Distribution (QKD) is a theoretically proven secure key exchange meth...
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G Network Architecture technology is undergoing a revolution in wireless communication, delivering ultra-high data rates, massive device connectivity, low latency and intelligent network automation, all of which are relevant to smart city, healthcare, autonomous vehicle and industrial IoT applications. But with its dis...
N. S. Alex, T. Jaya, R. Prasad· International Conference on...· 0 citations
It is concluded that a successful migration to post-quantum cryptography requires a gradual and hybrid transition strategy, supported by cryptographic agility and comprehensive practical evaluations of both security and performance.
Quantum computing offers major computational advances but threatens modern public-key cryptography. Classical algorithms such as RSA, Diffie–Hellman (DH), and Elliptic Curve Cryptography (ECC) are vulnerable to quantum attacks, particularly Shor’s algorithm. As large-scale quantum capabilities emerge, post-quantum cryp...
Noah Wright, Isabella Moore· International Journal of Mod...· 0 citations
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