Impact of packet size variation in overlay quantum key distribution network

M. Mehic, D. Komosny, Oliver Mauhart, M. Voznák, J. Rozhon
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引用次数: 6

Abstract

Quantum Key Distribution (QKD), based on the laws of physics rather than the computational complexity of mathematical problems, provides an information-theoretically secure way of establishing symmetrical binary keys between two geographically distant users. This paper is oriented to the practical realization of QKD public channels which are usually implemented as overlay point-to-point connections. We address the problem of minimizing the key material consumption by changing packet overhead. Our results show that the efficiency of communication in overlay QKD networks may increase when packets of larger sizes are used. However, this tuning directly affects the performance of overall communication. We evaluated this approach using an overlay network module which was implemented in the NS-3 simulator. The obtained results can be used for other overlay networks as well.
包大小变化对覆盖量子密钥分配网络的影响
量子密钥分发(QKD)基于物理定律而不是数学问题的计算复杂性,它提供了一种在两个地理位置遥远的用户之间建立对称二进制密钥的信息理论上安全的方法。本文针对QKD公共信道的实际实现进行了研究,QKD公共信道通常采用覆盖点对点连接的方式实现。我们通过改变数据包开销来解决最小化关键材料消耗的问题。我们的研究结果表明,当使用更大的数据包时,覆盖QKD网络中的通信效率可能会提高。但是,这种调优会直接影响整体通信的性能。我们使用在NS-3模拟器中实现的覆盖网络模块来评估这种方法。所得结果也可用于其他覆盖网络。
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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