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Improving Spectral Efficiency for Device-to-Device Data Offloading in Underlay Cellular Networks

机译:提高底层蜂窝网络中设备到设备数据卸载的频谱效率

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Device-to-Device (D2D) communications underlying cellular networks have been becoming a promising technology to improve spectral efficiency in next generation wireless networks. As an emerging paradigm, it decreases latency, increases coverage, and enhances performance of the network in terms of spectral efficiency (SE) of the network. However, the problem of interference imposes a great technical challenge to radio resource allocation in underlay D2D communications. Due to inherent nature of consuming high speed low cost data, D2D enabled cellular devices can switch from licensed cellular network to integrated unlicensed cellular networks by changing underlay D2D mode to unlicensed cellular mode named as global offloading. We study how in global offloading, D2D devices release scare shared resources and reduce interference resulting improvement of SE of the cellular network. We also propose a probabilistic model based on macro-to-femto cell changing probability of D2D devices, and apply the proposed modeling technique on basic Shannon based interference management scheme, optimal resource sharing scheme, and interference-aware graph based scheme to obtain SE of the cellular network. Numerical results confirm that our proposed modeling technique dramatically improves SE of the cellular network with respect to different percentages (e.g., 25%, 50%, and 75%) of resource blocks released by D2D devices during global offloading in all three schemes.
机译:设备到设备(D2D)底层蜂窝网络的通信已经成为提高下一代无线网络中的频谱效率的有希望的技术。作为新兴范式,它降低了延迟,增加了覆盖范围,并在网络的光谱效率(SE)方面提高了网络的性能。然而,干扰问题对底层D2D通信中的无线电资源分配施加了巨大的技术挑战。由于消耗高速低成本的数据的固有的性质,启用D2D蜂窝设备通过改变底层D2D模式命名为全球卸载未经许可的蜂窝模式可以从授权蜂窝网络切换到集成未经许可的蜂窝网络。我们研究全球卸载,D2D设备如何发布恐慌共享资源,并减少蜂窝网络SE的干扰。我们还提出了一种基于D2D设备的宏观到毫微微细胞更换概率的概率模型,并在基于基于Shannon的基础干扰管理方案,最优资源共享方案和基于干扰的方案的方案上应用了所提出的建模技术,以获得SE蜂窝网络。数值结果证实了我们提出的建模技术显着相对于不同的百分比提高了蜂窝网络的SE(例如,25%,50%和75%)在所有三种方案的全球卸载过程中由D2D设备释放的资源块。

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