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Energy Harvesting for Physical Layer Security in Cooperative Networks Based on Compressed Sensing

机译:基于压缩感的合作网络中物理层安全性的能量收集

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摘要

Energy harvesting (EH) has attracted a lot of attention in cooperative communication networks studies for its capability of transferring energy from sources to relays. In this paper, we study the secrecy capacity of a cooperative compressed sensing amplify and forward (CCS-AF) wireless network in the presence of eavesdroppers based on an energy harvesting protocol. In this model, the source nodes send their information to the relays simultaneously, and then the relays perform EH from the received radio-frequency signals based on the power splitting-based relaying (PSR) protocol. The energy harvested by the relays will be used to amplify and forward the received information to the destination. The impacts of some key parameters, such as the power splitting ratio, energy conversion efficiency, relay location, and the number of relays, on the system secrecy capacity are analyzed through a group of experiments. Simulation results reveal that under certain conditions, the proposed EH relaying scheme can achieve higher secrecy capacity than traditional relaying strategies while consuming equal or even less power.
机译:能量收获(EH)在合作通信网络中吸引了很多关注,以其对从来源转移到继电器的能量的能力。在本文中,我们研究了基于能量收集协议的窃听者存在中协同压缩感应扩增和前进(CCS-AF)无线网络的保密容量。在该模型中,源节点同时将其信息发送到继电器,然后基于基于功率分裂的中继(PSR)协议,继电器从所接收的射频信号执行EH。继电器收获的能量将用于放大并将所接收的信息转发到目的地。通过一组实验分析了一些关键参数,例如功率分裂比,能量转换效率,中继位置和继电器数量的影响。仿真结果表明,在某些条件下,所提出的EH中继方案可以比传统的中继策略达到更高的保密能力,同时消耗平等甚至更低的力量。

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