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Modeling Cellular Networks with Full Duplex D2D Communication: A Stochastic Geometry Approach

机译:具有全双工D2D通信的蜂窝网络建模:随机几何方法

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摘要

Full-duplex (FD) communication is optimistically promoted to double the spectral efficiency if sufficient self-interference cancellation (SIC) is achieved. However, this is not true when deploying FD-communication in a large-scale setup due to the induced mutual interference. Therefore, a large-scale study is necessary to draw legitimate conclusions about gains associated with FD-communication. This paper studies the FD operation for underlay device-to-device (D2D) communication sharing the uplink resources in cellular networks. We propose a disjoint fine-tuned selection criterion for the D2D and FD modes of operation. Then, we develop a tractable analytical paradigm, based on stochastic geometry, to calculate the outage probability and rate for cellular and D2D users. The results reveal that even in the case of perfect SIC, due to the increased interference injected to the network by FD-D2D communication, having all proximity UEs transmit in FD-D2D is not beneficial for the network. However, if the system parameters are carefully tuned, non-trivial network spectral-efficiency gains (64% shown) can be harvested. We also investigate the effects of imperfect SIC and D2D-link distance distribution on the harvested FD gains.
机译:如果实现了足够的自干扰消除(SIC),则乐观地促进了全双工(FD)通信以使频谱效率提高一倍。但是,由于相互干扰,在大规模设置中部署FD通信时,情况并非如此。因此,有必要进行大规模研究以得出与FD通信相关的收益的合理结论。本文研究了共享蜂窝网络中上行链路资源的底层设备到设备(D2D)通信的FD操作。我们为D2D和FD操作模式提出了不相交的微调选择标准。然后,我们基于随机几何图形开发了一种易于处理的分析范例,以计算蜂窝和D2D用户的中断概率和发生率。结果表明,即使在完美SIC的情况下,由于FD-D2D通信对网络注入的干扰增加,让所有邻近UE都以FD-D2D进行传输对网络不利。但是,如果仔细调整系统参数,则可以收获非平凡的网络频谱效率增益(显示为64%)。我们还研究了不完善的SIC和D2D链接距离分布对收获的FD增益的影响。

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