Application of Swarm Intelligence Techniques for Optimization in Speech-to-Text Translation Systems

Shubhi Gupta, Raju T Hemanth, G Lalitha, Manish Gupta, B. VeeraSekharReddy, Rafal Emad · 2024

The rapid advancement of quantum computing has led to a fundamental change in the field of cryptography, requiring the development of correspondingly sophisticated security frameworks. The construction of a strong security architecture specifically for Quantum Key Distribution (QKD) in quantum communication systems is described in this study. Using the fundamental ideas of quantum mechanics—entanglement and no-cloning—the suggested framework offers defence against the most dangerous dangers, including those posed by quantum computers themselves. We provide an architectural blueprint that combines forward secrecy and new authentication techniques such that keys security is unaffected even in the event that future communications are stolen. The framework's durability and adaptability are confirmed when it is tested against a variety of cryptographic requirements. Theoretical analysis coupled with simulation results substantiates the robustness of the proposed framework, heralding a significant advancement in secure quantum communications. This research contributes a foundational layer to the nascent infrastructure of quantum networks, facilitating a future where quantum and classical systems coexist and operate synergistically. The implications of this work are profound, setting the stage for a new era of secure communications underpinned by quantum technological innovations.

Read the paper · More papers on PaperTik