论文标题
增强大规模多端纳纳异质无线网络中随机缓存的物理层安全性
Enhancing Physical Layer Security of Random Caching in Large-Scale Multi-Antenna Heterogeneous Wireless Networks
论文作者
论文摘要
在本文中,我们为大规模多端的多种无线网络提出了一种新型的安全随机缓存方案,在有被动式窃听者和主动jammers的情况下,基本站(BSS)向合法用户提供随机缓存的机密内容。为了保护内容传递,我们认为BSS将人造噪声和有用的信号传输。通过使用随机几何形状的工具,我们首先分析了平均可靠传输概率(RTP)和平均机密传输概率(CTP),这些概率(CTP)既具有窃听者的影响,又要考虑了干扰器的影响。我们在平均RTP上进一步提供紧密的上和下限。这些分析结果使我们能够对平均RTP的行为以及平均CTP在关键系统参数方面获得丰富的见解。此外,我们优化文件的缓存分布,以最大化系统的平均RTP,同时满足缓存大小和平均CTP的约束。通过数值结果,我们表明,与现有解决方案相比,我们提出的安全随机缓存方案可以有效地提高系统的保密性能。
In this paper, we propose a novel secure random caching scheme for large-scale multi-antenna heterogeneous wireless networks, where the base stations (BSs) deliver randomly cached confidential contents to the legitimate users in the presence of passive eavesdroppers as well as active jammers. In order to safeguard the content delivery, we consider that the BSs transmits the artificial noise together with the useful signals. By using tools from stochastic geometry, we first analyze the average reliable transmission probability (RTP) and the average confidential transmission probability (CTP), which take both the impact of the eavesdroppers and the impact of the jammers into consideration. We further provide tight upper and lower bounds on the average RTP. These analytical results enable us to obtain rich insights into the behaviors of the average RTP and the average CTP with respect to key system parameters. Moreover, we optimize the caching distribution of the files to maximize the average RTP of the system, while satisfying the constraints on the caching size and the average CTP. Through numerical results, we show that our proposed secure random caching scheme can effectively boost the secrecy performance of the system compared to the existing solutions.