论文标题

D2D或Sidelink网络的基于双阈值的最佳设备选择方案

Double Threshold based Optimal Device Selection Scheme for D2D or Sidelink Network

论文作者

Kumarapandian, Shamganth, Ahmed, Qasim Zeeshan, Khan, Faheem A.

论文摘要

设备对设备(D2D)或Sidelink辅助通信被认为是提高5G和超越通信系统光谱效率的最有前途的技术之一。但是,存在两个主要挑战:1)选择提高光谱效率的最佳设备数量,以及2)改善这种通信系统的物理层安全性。最佳设备提高了保密能力,最佳设备的选择可以增强物理层安全性。因此,在本文中,我们建议在存在和不存在窃听器的情况下,为具有放大和正向的协作无线网络的双阈值最佳设备选择(ODS)方案(ODS)方案,以增强D2D网络的物理层安全性。通过不同的距离情况,设备场景和调制方案分析所提出的方案。位错误率(BER)性能分析得出的结论是,与现有在高信号噪声比(SNR)的现有ODS方案相比,建议的基于双阈值的ODS方案在BER为0:004的性能增益超过4 dB。此外,建议的方案增强了物理层安全性。

Device-to-device (D2D) or Sidelink aided communication is regarded as one of the most promising technologies to improve the spectral efficiency of the 5G and beyond communication system. However, two main challenges exist: 1) the selection of the optimal number of devices for improving the spectral efficiency, and 2) improving the physical layer security of such a communication system. The optimal device improves the secrecy capacity, and the selection of optimal devices enhances the physical layer security. Therefore, in this paper, we propose a double threshold-based optimal device selection (ODS) scheme for a cooperative wireless network with amplify and forward (AF) protocol in the presence and absence of an eavesdropper to enhance the physical layer security for the D2D network. The proposed scheme is analyzed with different distance cases, device scenarios, and modulation schemes. The bit error rate (BER) performance analysis concludes that a performance gain of more than 4 dB is achieved at the BER of 0:004 for the proposed double threshold-based ODS scheme compared to the existing ODS scheme at a high signal to noise ratio (SNR). Furthermore, the proposed scheme enhances the physical layer security.

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