论文标题

语义通信的量子密钥分布(QKD)网络中的合作资源管理(QKD)

Cooperative Resource Management in Quantum Key Distribution (QKD) Networks for Semantic Communication

论文作者

Kaewpuang, Rakpong, Xu, Minrui, Lim, Wei Yang Bryan, Niyato, Dusit, Yu, Han, Kang, Jiawen, Shen, Xuemin Sherman

论文摘要

智能本地6G网络中的隐私和安全问题的增加需要量子密钥分布式语义信息通信(QKD-SIC)。在QKD-SIC系统中,通过量子通道连接的边缘设备可以从语义源有效地加密语义信息,并将加密的语义信息牢固地传输到语义目的地。在本文中,我们考虑了一个有效的资源(即QKD和KM波长)共享问题,以支持Edge设备生成的语义信息的不确定性下QKD-SIC系统。在这样的系统中,QKD服务提供商为边缘设备提供了具有不同订阅选项的QKD服务。因此,为了降低边缘设备用户的成本,我们为传达语义信息的边缘设备提供了一个QKD资源管理框架。该框架基于两个阶段的随机优化模型,以实现最佳的QKD部署。此外,为了降低QKD服务提供商的部署成本,可以根据有效的QKD-SIC资源管理(包括边缘设备之间的语义信息传输,Secret-Key-Key Provisioning和QKD服务提供商的合作形式之间的语义信息传输)来利用QKD服务提供商的部署成本。详细说明,配制的两阶段随机优化模型可以在满足边缘设备的语义信息传输的秘密键要求时实现最佳QKD-SIC资源部署。此外,要在合作QKD服务提供商中分享QKD资源池的成本,以公平且可解释的方式组建联盟,拟议的框架利用合作游戏理论的莎普利价值概念作为解决方案。实验结果表明,与现有的非合作基线相比,提出的框架可以将部署成本降低约40%。

Increasing privacy and security concerns in intelligence-native 6G networks require quantum key distribution-secured semantic information communication (QKD-SIC). In QKD-SIC systems, edge devices connected via quantum channels can efficiently encrypt semantic information from the semantic source, and securely transmit the encrypted semantic information to the semantic destination. In this paper, we consider an efficient resource (i.e., QKD and KM wavelengths) sharing problem to support QKD-SIC systems under the uncertainty of semantic information generated by edge devices. In such a system, QKD service providers offer QKD services with different subscription options to the edge devices. As such, to reduce the cost for the edge device users, we propose a QKD resource management framework for the edge devices communicating semantic information. The framework is based on a two-stage stochastic optimization model to achieve optimal QKD deployment. Moreover, to reduce the deployment cost of QKD service providers, QKD resources in the proposed framework can be utilized based on efficient QKD-SIC resource management, including semantic information transmission among edge devices, secret-key provisioning, and cooperation formation among QKD service providers. In detail, the formulated two-stage stochastic optimization model can achieve the optimal QKD-SIC resource deployment while meeting the secret-key requirements for semantic information transmission of edge devices. Moreover, to share the cost of the QKD resource pool among cooperative QKD service providers forming a coalition in a fair and interpretable manner, the proposed framework leverages the concept of Shapley value from cooperative game theory as a solution. Experimental results demonstrate that the proposed framework can reduce the deployment cost by about 40% compared with existing non-cooperative baselines.

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