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首页> 外文期刊>IEEE communications letters >Physical Layer Security in Large–Scale Probabilistic Caching: Analysis and Optimization
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Physical Layer Security in Large–Scale Probabilistic Caching: Analysis and Optimization

机译:大规模概率缓存中的物理层安全性:分析和优化

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摘要

Edge caching is proposed to offload traffic from backhaul links by storing popular contents on edge servers and reusing these pre-cached contents to meet the frequent requests from local users. Due to the limited computing and caching resources of edge servers, the traditional encryption and decryption technologies, deployed in the upper layers of protocol stacks, appeared difficult in providing secure content delivery for the growing number of mobile users. In this letter, we consider the physical layer security issues for the popular probabilistic caching. Unlike most prior works, which are concentrated on maximizing achievable transmission rate, we analyze the average secure delivery probability of the caching network and jointly optimize the redundant rate and caching probabilities. Simulation results are identical with the theoretical ones and the outperformance over existing caching strategies is observed with the optimal caching probability derived in this letter.
机译:提出了边缘缓存以通过将流行内容存储在边缘服务器上并重新使用这些预缓存的内容来满足本地用户的频繁请求来减轻回程链路的流量。由于边缘服务器的计算和缓存资源有限,部署在协议栈上层的传统加密和解密技术似乎难以为越来越多的移动用户提供安全的内容交付。在这封信中,我们考虑了流行的概率缓存的物理层安全性问题。与大多数先前的工作集中在最大化可实现的传输速率上不同,我们分析了缓存网络的平均安全交付概率,并共同优化了冗余速率和缓存概率。仿真结果与理论上的结果相同,并且以此信中得出的最佳缓存概率观察到了优于现有缓存策略的性能。

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