硬件路由量子密钥分发网络

IF 2.5 Q3 QUANTUM SCIENCE & TECHNOLOGY IET Quantum Communication Pub Date : 2022-04-08 DOI:10.1049/qtc2.12039
Ansh Singal, Sundaraja Sitharam Iyengar, Latesh Kumar, Azad M. Madni
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引用次数: 2

摘要

量子通信网络为银行业、国防等多个应用带来了革命性的安全通信的巨大潜力。关于量子网络的大多数文献都涉及使用软件定义网络(sdn)的网络和资源分配问题。然而,sdn引入了几个问题,例如应用程序操纵攻击和可伸缩性问题。我们提出了一种实现量子通信网络的新方案,该方案通过使用激光通信标记量子比特光子来实现硬件路由而不是软件定义。我们提供了新方案的全面实现,并提出了两种新的算法-带宽共享和公平带宽共享来实现硬件路由量子网络。与先到先得算法相比,该算法使密钥率提高了118%,网络资源利用率提高了147%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Hardware routed quantum key distribution networks

Quantum communication networks pose immense potential for revolutionising secure communications for several applications such as banking, defence, etc. The majority literature on quantum networks deals with the problems of networking and resource allocation using Software Defined Networks (SDNs). SDNs, however, introduce several issues, such as app manipulation attacks and scalability issues. We propose a novel scheme of implementing quantum communication networks that are hardware routed rather than software defined by labelling qubit photons using laser communications. We provide a comprehensive implementation of the new scheme and propose two novel algorithms—Bandwidth sharing and Equitable bandwidth sharing to implement the hardware routed quantum network. The algorithms result in a key rate increase of 118% and improved network resource utilization of 147% as compared to the First Come First Serve algorithm.

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CiteScore
6.70
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0.00%
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