Relay selection of relay-assisted Device-to-Device and uplink communication underlying cellular networks

Jen-Yi Pan, Ming-Hung Hsu
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引用次数: 6

Abstract

Recently, an enormous increasing number of mobile devices have changed people's life and brought huge demands for services. D2D (Device-to-Device) communication is a brand-new fashion that allows mobile stations communicating directly with each other using existing licensed band without traversing through core network, and thereby offload traffic from base stations (BS). On the other hand, relays are indispensable to the next generations of mobile communication networks. Relays can remove the coverage holes, increase system capacity, expand the coverage area of base stations and enhance transmission rate for the devices in cell edge, and thereby it also provides uniform data rate coverage in the cellular networks. This paper proposes a model that integrates the advantages of relay and D2D and proposes a method that can improve spectrum efficiency and decrease path loss or shadow fading which makes worse communication in the system. This paper also proposes a way how to choose a better relay and it can increase the system throughput. Simulation results of uplink and D2D communication show that the proposed method can increase the system throughput.
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蜂窝网络底层中继辅助设备对设备和上行通信的中继选择
近年来,越来越多的移动设备改变了人们的生活,带来了巨大的服务需求。D2D (Device-to-Device)通信是一种全新的通信方式,它允许移动站使用现有的许可频段直接相互通信,而无需穿越核心网络,从而从基站(BS)卸载流量。另一方面,对于下一代移动通信网络来说,中继是必不可少的。中继可以消除覆盖漏洞,增加系统容量,扩大基站的覆盖范围,提高蜂窝边缘设备的传输速率,从而在蜂窝网络中提供统一的数据速率覆盖。本文提出了一种综合了中继和D2D优点的模型,并提出了一种提高频谱效率,减少导致系统通信恶化的路径损耗或阴影衰落的方法。本文还提出了如何选择较好的中继以提高系统吞吐量的方法。上行和D2D通信的仿真结果表明,该方法可以提高系统吞吐量。
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