Security of Energy Harvesting Based D2D Communications in Cognitive Cellular Network

Koduru Sree Venkateswara Rao, Ashutosh Kumar Singh
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Abstract

This paper underpins the secrecy performance analysis of an energy harvesting-based device-to-device (D2D) communication in a cognitive cellular network. The energy constrained D2D transmitter (Alice) harvests energy from multi-antenna-based power beacons (PBs). The D2D communication system employs underlay scheme of dynamic spectrum access while Alice communicates with the D2D receiver (Bob) in the presence of Eavesdropper (Eve). In this network, we assume that the communication happens in a time frame that is compartmentalized into two-time slots. The energy harvesting is carried out in the first time slot, and the information signal is processed in the later time slot. An analytical expression for the secrecy outage probability is derived, and some useful insights are obtained from it.
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认知蜂窝网络中基于能量采集的D2D通信安全性研究
本文对认知蜂窝网络中基于能量采集的设备对设备(D2D)通信的保密性能进行了分析。能量受限的D2D发射机(Alice)从基于多天线的功率信标(PBs)获取能量。D2D通信系统采用动态频谱接入的底层方案,在窃听者(Eve)在场的情况下,Alice与D2D接收者(Bob)通信。在这个网络中,我们假设通信发生在被划分为两个时隙的时间框架中。在第一个时隙进行能量采集,在后一个时隙对信息信号进行处理。导出了保密中断概率的解析表达式,并从中得到了一些有用的见解。
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