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On the Secrecy Capacity of a Full-Duplex Wirelessly Powered Communication System

机译:全双工无线通信系统的保密容量

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摘要

In this paper, we investigate the secrecy capacity of a point-to-point, full-duplex (FD) wirelesly powered communication system in the presence of a passive eavesdropper (EVE). The considered system is comprised of an energy transmitter (ET), an energy harvesting user (EHU), and a passive EVE. The ET transmits radio-frequency energy, which is used for powering the EHU as well as for generating interference at the EVE. The EHU uses the energy harvested from the ET to transmit confidential messages back to the ET. As a consequence of the FD mode of operation, both the EHU and the ET are subjected to self-interference, which has different effects at the two nodes. In particular, the self-interference impairs the decoding of the received message at the ET, whilst it serves as an additional energy source at the EHU. For this system model, we derive an upper and a lower bound on the secrecy capacity. For the lower bound, we propose a simple achievability scheme. Our numerical results show significant improvements in terms of achievable secrecy rate when the proposed communication scheme is employed against its half-duplex counterpart, even for practical self-interference values at the ET.
机译:在本文中,我们研究了存在无源窃听者(EVE)的点对点全双工(FD)无线供电通信系统的保密能力。所考虑的系统包括一个能量发送器(ET),一个能量收集用户(EHU)和一个被动EVE。 ET发射射频能量,该能量用于为EHU供电以及在EVE处产生干扰。 EHU使用从ET收集的能量将机密消息发送回ET。由于采用FD操作模式,EHU和ET都受到自干扰,这在两个节点上具有不同的影响。特别地,自干扰削弱了在ET处对接收到的消息的解码,而自干扰却在EHU上充当了额外的能源。对于此系统模型,我们得出了保密容量的上限和下限。对于下限,我们提出了一个简单的可实现方案。我们的数值结果表明,即使针对ET的实际自我干扰值,将拟议的通信方案用于其半双工通信方案时,在可实现的保密率方面也有显着改善。

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