A Resource Allocation Scheme for Independent Core Transmission of Quantum Key Distribution

Lingfeng Lu, Yongmei Sun, Yaoxian Gao, Weiwen Kong
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Abstract

To ensure the security of optical networks in the future, integrating quantum key distribution (QKD) with optical networks is one of the solutions. Moreover, the optical network based on multi-core fiber (MCF) is also one of the ways to improve the transmission capacity. Therefore, we study the integration of QKD into MCF-enabled optical networks. Aiming at the resource allocation problem of MCF-enabled wavelength division multiplexing optical networks, this paper proposes a resource allocation scheme which is suitable for independent-core-transmission of classical signals and quantum signals. For core resource, we propose the alternate core allocation algorithm. For wavelength resource, we propose the iteration-based wavelength allocation algorithm. The overall scheme uses the proposed two algorithms to first allocate the core and then allocate the wavelength. The simulation results show that the proposed scheme has a great improvement in secret key rate (SKR) compared with the benchmark scheme on the regular hexagonal 7-core fiber and 19-core fiber. And the proposed scheme still has good performance under long transmission distance and high classical signal power.
量子密钥分发中独立核传输的资源分配方案
为了保证未来光网络的安全,将量子密钥分发(QKD)与光网络集成是解决方案之一。此外,基于多芯光纤(MCF)的光网络也是提高传输容量的途径之一。因此,我们研究将QKD集成到使能mcf的光网络中。针对使能mcf的波分复用光网络的资源分配问题,提出了一种适用于经典信号和量子信号独立核传输的资源分配方案。对于核心资源,我们提出了备用核心分配算法。对于波长资源,我们提出了基于迭代的波长分配算法。整体方案采用了上述两种算法,先分配核心,再分配波长。仿真结果表明,在正六角形7芯光纤和19芯光纤上,与基准方案相比,该方案在密钥率方面有较大提高。在长距离传输和高经典信号功率的情况下,该方案仍然具有良好的性能。
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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