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Energy Efficiency and Achievable Data Rate of Device-to-Device Communications in Cellular Networks

机译:在蜂窝网络中的能效和可实现的设备到设备通信数据速率

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Device-to-Device (D2D) communications in cellular networks allow devices to communicate directly without going through the base station (BS). In this paper, we have established a D2D cooperative relaying scenario which is specified for LTE-Advanced and 5G systems networks. We analyze energy efficiency (EE) and achievable data rate (DR) for D2D communications underlaying cellular networks in three transmission modes, namely, cellular mode (CM), direct D2D mode (DM), and cooperative D2D mode (CoopD2D) where cellular user equipment (CUE) devices help each other to exchange information. We show that the location of CUEs, the distance between D2D users and the distance between D2D pairs and the base station are important factors for deciding which of the three modes should be used in order to achieve better EE and DR. We have also investigated the effects of choosing different numbers of relaying branches and relays in each branch on the performance of the network. This investigation leads to identifying optimal transmission schemes for maximizing EE and DR under varying environmental conditions.
机译:蜂窝网络中的设备到设备(D2D)通信允许设备直接通信而不通过基站(BS)。在本文中,我们建立了为LTE-Advanced和5G系统网络指定的D2D协作中继方案。在三种传输模式下,分析用于D2D通信的能效(EE)和可实现的数据速率(DR),即蜂窝模式(CM),直接D2D模式(COOP2D),在其中蜂窝用户的蜂窝网络设备(CUE)设备互相帮助交换信息。我们表明提示的位置,D2D用户之间的距离和D2D对与基站之间的距离是决定应使用哪三种模式中的哪一个的重要因素,以实现更好的EE和DR。我们还研究了在每个分支中选择不同数量的中继分支和继电器的效果对网络的性能。该研究导致识别最佳传输方案,用于最大化EE和DR在不同的环境条件下。

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