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Stochastic geometry analysis of achievable transmission capacity for relay-assisted Device-to-Device networks

机译:用于中继辅助设备到设备网络可实现传输能力的随机几何分析

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Relay-assisted Device-to-Device (D2D) communication is an enhanced technology for D2D communication. With relay nodes' assistances, the communication distance of the D2D pair is extended and the quality of communication can be improved. This paper focuses on the achievable transmission capacity of relay-assisted D2D network while keeping a low outage probability of the cellular users. based on stochastic geometry, the mathematical model of relay-assisted D2D network, with relay selection criterion, is formed and analyzed. Subsequently, the optimal transmission power ratio of the cellular system to the D2D system and the optimal relay selection range are derived. Furthermore, the achievable transmission capacity with derived optimal parameters is presented as a close-form expression. Then the numerical results show that the performance of the D2D network can be improved by relay-assisted transmission in case of poor wireless environment. In addition, the influences of the densities of both cellular, D2D and relay users and the communication distances between D2D pairs are evaluated in this paper.
机译:中继辅助设备到设备(D2D)通信是D2D通信的增强技术。利用继电器节点的辅助,D2D对的通信距离扩展,可以提高通信质量。本文重点介绍继电器辅助D2D网络的可实现传输能力,同时保持蜂窝用户的低停电概率。基于随机几何形状,形成和分析了中继辅助D2D网络的数学模型,并分析了中继选择标准。随后,导出蜂窝系统与D2D系统的最佳传输功率比和最佳中继选择范围。此外,具有导出的最佳参数的可实现的传输容量作为闭合形式表达式呈现。然后,数值结果表明,在无线环境差的情况下,通过中继辅助传输可以改善D2D网络的性能。另外,在本文中评估了蜂窝,D2D和继电器用户的密度和D2D对之间的通信距离的影响。

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