天空地一体化网络量子密钥分配(QKD)中的资源分配

R. Kaewpuang, Minrui Xu, D. Niyato, Han Yu, Zehui Xiong
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引用次数: 4

摘要

空间-空地综合网络(SAGIN)是第六代(6G)通信中最有前途的先进模式之一。SAGIN可以为互连的应用程序和服务支持高数据速率、低延迟和无缝网络覆盖。然而,随着量子计算机容量的不断增加,SAGIN中的通信面临着巨大的安全威胁。幸运的是,用于在SAGIN中建立安全通信的量子密钥分发(QKD),即基于SAGIN的QKD,可以提供信息理论上的安全性。为了使异构节点SAGIN中的QKD部署成本最小化,本文提出了一种基于随机规划的SAGIN QKD资源分配方案。该方案通过两阶段随机规划(SP)来制定,同时考虑了安全要求和天气条件等不确定性。大量实验结果表明,该方案在各种安全需求和不可预测的天气条件下均能实现最优部署成本。
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Resource Allocation in Quantum Key Distribution (QKD) for Space-Air-Ground Integrated Networks
Space-air-ground integrated networks (SAGIN) are one of the most promising advanced paradigms in the sixth generation (6G) communication. SAGIN can support high data rates, low latency, and seamless network coverage for interconnected applications and services. However, communications in SAGIN are facing tremendous security threats from the everincreasing capacity of quantum computers. Fortunately, quantum key distribution (QKD) for establishing secure communications in SAGIN, i.e., QKD over SAGIN, can provide information-theoretic security. To minimize the QKD deployment cost in SAGIN with heterogeneous nodes, in this paper, we propose a resource allocation scheme for QKD over SAGIN using stochastic programming. The proposed scheme is formulated via two-stage stochastic programming (SP), while considering uncertainties such as security requirements and weather conditions. Under extensive experiments, the results clearly show that the proposed scheme can achieve the optimal deployment cost under various security requirements and unpredictable weather conditions.
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