Secure Probabilistic Caching for Stochastic Multi-User Multi-Relay Networks

Lisheng Fan, Xianfu Lei, Nan Zhao, P. Fan, G. Karagiannidis
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引用次数: 1

Abstract

In this paper, we study a stochastic multi-user multi-relay network, where the data transmission can be overheard by multiple eavesdroppers. The users, relays and eavesdroppers are assumed to arrive at the network subject to homogeneous poisson point process (PPP). Cache equipped at the relays and users can pre-store part of file contents, which can help enhance the transmission security. Hence, it is of vital importance to design an effective secure probabilistic caching strategy to ensure the security of content transmission. To this end, we first consider several cache-aided transmission modes of self-fetch, D2D-transmission, relay-transmission, and source-transmission. We then study the network secrecy performance by analyzing the expression of secure cache throughput and an analytical lower bound. In order to maximize the secure cache throughput, we further optimize the probabilistic caching strategy by using a heuristic algorithm. Numerical results are provided to demonstrate that the proposed strategy outperforms the conventional caching strategies.
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随机多用户多中继网络的安全概率缓存
本文研究了一种随机多用户多中继网络,其中数据传输可能被多个窃听者窃听。假设用户、中继和窃听者均遵循均质泊松点过程(PPP)到达网络。在中继和用户处设置缓存,可以预先存储部分文件内容,有助于提高传输的安全性。因此,设计一种有效的安全概率缓存策略来保证内容传输的安全性至关重要。为此,我们首先考虑了几种缓存辅助传输模式:自获取、d2d传输、中继传输和源传输。然后通过分析安全缓存吞吐量的表达式和分析下界来研究网络的保密性能。为了使安全缓存吞吐量最大化,我们使用启发式算法进一步优化了概率缓存策略。数值结果表明,该策略优于传统的缓存策略。
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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