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首页> 外文期刊>IEEE Transactions on Communications >Physical Layer Security With RF Energy Harvesting in AF Multi-Antenna Relaying Networks
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Physical Layer Security With RF Energy Harvesting in AF Multi-Antenna Relaying Networks

机译:AF多天线中继网络中具有RF能量收集的物理层安全性

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摘要

In this paper, we analyze the secrecy capacity of a half-duplex energy harvesting (EH)-based multi-antenna amplify-and-forward relay network in the presence of a passive eavesdropper. During the first phase, while the source is in the transmission mode, the legitimate destination transmits an auxiliary artificial noise (AN) signal which has two distinct purposes: 1) to transfer power to the relay and 2) to improve system security. Since the AN is known at the legitimate destination, it is easily cancelled at the intended destination, which is not the case at the eavesdropper. In this respect, we derive new exact analytical expressions for the ergodic secrecy capacity for various well-known EH relaying protocols, namely, time switching relaying (TSR), power splitting relaying (PSR), and ideal relaying receiver (IRR). Monte Carlo simulations are also provided throughout our investigations to validate the analysis. The impacts of some important system parameters, such as EH time, power splitting ratio, relay location, AN power, EH efficiency, and the number of relay antennas, on the system performance are investigated. The results reveal that the PSR protocol generally outperforms the TSR approach in terms of the secrecy capacity.
机译:在本文中,我们分析了在存在无源窃听者的情况下,基于半双工能量收集(EH)的多天线放大转发中继网络的保密容量。在第一阶段中,当源处于传输模式时,合法目标将发送辅助人工噪声(AN)信号,该信号具有两个不同的目的:1)将功率传输到中继,以及2)提高系统安全性。由于AN在合法的目的地是已知的,因此很容易在预期的目的地将其取消,而在窃听者中情况并非如此。在这方面,我们针对各种众所周知的EH中继协议,即时间切换中继(TSR),功率分配中继(PSR)和理想中继接收器(IRR),得出了遍历保密容量的新的精确解析表达式。我们在整个调查过程中也提供了蒙特卡洛模拟,以验证分析结果。研究了一些重要的系统参数,例如EH时间,功率分配比,中继位置,AN功率,EH效率以及中继天线的数量,对系统性能的影响。结果表明,在保密容量方面,PSR协议通常优于TSR方法。

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