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车对车通信中通频带干扰下全双工中继的遍历容量分析。

Ergodic Capacity Analysis of Full Duplex Relaying in the Presence of Co-Channel Interference in V2V Communications.

机构信息

ÉTS, LaCIME Laboratory, University of Québec, Montréal, QC H3C 1K3, Canada.

出版信息

Sensors (Basel). 2020 Jan 2;20(1):261. doi: 10.3390/s20010261.

Abstract

We analyze the ergodic capacity of a dual-hop full duplex amplify-and-forward (AF) vehicle-to-vehicle (V2V) cooperative relaying system over Nakagami- fading channels. In this context, the impacts of self-interference (SI) at the relay and co-channel interference (CCI) at the destination are taken into account in this analysis. Precisely, based on the analysis of the moment generating function (MGF) of the signal-to-interference-plus-noise ratio (SINR), new exact and lower bound expressions for the ergodic capacity are derived. The ergodic capacity upper bound is also derived based on the asymptotic outage probability of the approximated SINR. Monte-Carlo simulation results are presented to corroborate the derived analytical results. Our results show the significant impact of the considered interferences on the system performance. It is shown that the ergodic capacity is degraded when the average SI at the relay and/or the average CCI at the destination is increased. This highlights the importance of taking these phenomena into account in the performance evaluation in order to assess the practical limit of full duplex relaying (FDR) cooperative wireless communications. Interestingly, it is also observed that FDR with SI and CCI still shows a higher ergodic capacity than the interference-free half duplex relaying, especially at medium to high signal-to-noise ratios (SNRs).

摘要

我们分析了奈奎斯特衰落信道下双跳全双工放大转发(AF)车对车(V2V)协作中继系统的遍历容量。在这种情况下,本分析考虑了中继处的自干扰(SI)和目的处的同信道干扰(CCI)的影响。具体来说,基于信号干扰噪声比(SINR)的矩生成函数(MGF)分析,推导出了遍历容量的新精确和下界表达式。还基于近似 SINR 的渐近中断概率推导出了遍历容量上界。给出了蒙特卡罗仿真结果以验证推导的分析结果。我们的结果表明,所考虑的干扰对系统性能有重大影响。当中继处的平均 SI 和/或目的处的平均 CCI 增加时,遍历容量会降低。这突出表明,在评估全双工中继(FDR)协作无线通信的实际限制时,必须考虑这些现象,以评估性能。有趣的是,还观察到具有 SI 和 CCI 的 FDR 仍然比无干扰的半双工中继具有更高的遍历容量,特别是在中等至高信噪比(SNR)下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cb1/6982971/d0fff56b9390/sensors-20-00261-g001.jpg

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