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Secure Transmission in Multicarrier Time-Switching Wireless Powered Communication Networks with Full-duplex Receivers

机译:具有全双工接收器的多载波时间切换无线通信网络中的安全传输

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摘要

In this paper, we investigate physical layer security, where a source node communicates with a wireless powered full-duplex destination node using multiple subcarriers in the presence of an eavesdropper. The destination node adopts the time switching technique to coordinate information decoding and energy harvesting, and can use the harvested energy to send jamming signals to interfere with the eavesdropper. We investigate the problem of optimizing transmit power allocation at the source node, the transmit power allocation for jamming at the destination node and the time allocation for maximizing the secrecy rate, and propose an iterative algorithm to solve the optimization problem. It is shown by simulation results that the proposed algorithm greatly outperforms other reference algorithms.
机译:在本文中,我们研究了物理层安全性,其中在存在窃听者的情况下,源节点使用多个子载波与无线全双工目标节点进行通信。目的节点采用时间切换技术来协调信息解码和能量收集,并可以使用收集的能量发送干扰信号来干扰窃听者。我们研究了在源节点上优化发射功率分配,在目标节点处进行干扰的发射功率分配以及使保密率最大化的时间分配问题,并提出了一种迭代算法来解决该优化问题。仿真结果表明,该算法大大优于其他参考算法。

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