论文标题

量子安全空间空间集成网络:概念,框架和案例研究

Quantum-Secured Space-Air-Ground Integrated Networks: Concept, Framework, and Case Study

论文作者

Xu, Minrui, Niyato, Dusit, Xiong, Zehui, Kang, Jiawen, Cao, Xianbin, Shen, Xuemin Sherman, Miao, Chunyan

论文摘要

在接下来的6G时代,现有的地面网络已发展为空气空间集​​成网络(SAGIN),提供超高的数据速率,无缝网络覆盖范围以及无处不在的智能,以进行应用程序和服务的通信。但是,萨金的常规通信仍然面临数据机密性问题。幸运的是,Sagin上的量子密钥分布(QKD)的概念能够提供信息理论安全性,以通过量子加密在Sagin中的安全通信。因此,在本文中,我们提出了使用量子力学来保护空间,空气和地面节点之间的数据通道的量子固定的Sagin。此外,我们提出了一个通用的QKD服务供应框架,以最大程度地降低QKD服务的成本,这是量子安全的萨金的不确定性和通信动态。在此框架中,基于光纤的QKD服务部署在被动光网络中,具有低损失和高稳定性的优势。此外,在实时数据传输阶段,将广泛覆盖和灵活的卫星和基于无人机的QKD服务作为补充。最后,为了检查提出的概念和框架的有效性,在元式元素中有效地解决了元元应用中安全通信的不确定和动态因素的量子安全萨金的案例研究。

In the upcoming 6G era, existing terrestrial networks have evolved toward space-air-ground integrated networks (SAGIN), providing ultra-high data rates, seamless network coverage, and ubiquitous intelligence for communications of applications and services. However, conventional communications in SAGIN still face data confidentiality issues. Fortunately, the concept of Quantum Key Distribution (QKD) over SAGIN is able to provide information-theoretic security for secure communications in SAGIN with quantum cryptography. Therefore, in this paper, we propose the quantum-secured SAGIN which is feasible to achieve proven secure communications using quantum mechanics to protect data channels between space, air, and ground nodes. Moreover, we propose a universal QKD service provisioning framework to minimize the cost of QKD services under the uncertainty and dynamics of communications in quantum-secured SAGIN. In this framework, fiber-based QKD services are deployed in passive optical networks with the advantages of low loss and high stability. Moreover, the widely covered and flexible satellite- and UAV-based QKD services are provisioned as a supplement during the real-time data transmission phase. Finally, to examine the effectiveness of the proposed concept and framework, a case study of quantum-secured SAGIN in the Metaverse is conducted where uncertain and dynamic factors of the secure communications in Metaverse applications are effectively resolved in the proposed framework.

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