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首页> 外文期刊>Wireless Communications, IEEE Transactions on >Device-to-Device Underlaid Cellular Networks under Rician Fading Channels
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Device-to-Device Underlaid Cellular Networks under Rician Fading Channels

机译:Rician衰落信道下的设备到设备嵌入式蜂窝网络

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摘要

Using Device-to-device (D2D) communications in a cellular network is an economical and effective approach to increase the transmission data rate and extend the coverage. Nevertheless, the D2D underlaid cellular network is challenging due to the presence of inter-tier and intra-tier interferences. With necessarily lower antenna heights in D2D communication links, the fading channels are likely to contain strong line-of-sight components, which are different from the Rayleigh fading distribution in conventional two-tier heterogeneous networks. In this paper, we derive the success probability, spatial average rate, and area spectral efficiency performances for both cellular users and D2D users by taking into account the different channel propagations that they experience. Specifically, we employ stochastic geometry as an analysis framework to derive closed-form expressions for above performance metrics. Furthermore, to reduce cross-tier interferences and improve system performances, we propose a centralized opportunistic access control scheme as well as a mode selection mechanism. According to the analysis and simulations, we obtain interesting tradeoffs that depend on the effect of the channel propagation parameter, user node density, and the spectrum occupation ratio on the different performance metrics. This work highlights the importance of incorporating the suitable channel propagation model into the system design and analysis to obtain the realistic results and conclusions.
机译:在蜂窝网络中使用设备到设备(D2D)通信是一种提高传输数据速率并扩展覆盖范围的经济有效的方法。然而,由于层间和层内干扰的存在,D2D底层蜂窝网络具有挑战性。由于D2D通信链路中的天线高度必定较低,因此衰落信道可能包含强大的视线分量,这与常规两层异构网络中的瑞利衰落分布不同。在本文中,我们通过考虑蜂窝用户和D2D用户经历的不同信道传播,得出成功概率,空间平均速率和区域频谱效率性能。具体来说,我们采用随机几何作为分析框架,以得出上述性能指标的闭式表达式。此外,为了减少跨层干扰并提高系统性能,我们提出了集中式机会访问控制方案以及模式选择机制。根据分析和仿真,我们获得了有趣的折衷方案,这些折衷方案取决于信道传播参数,用户节点密度以及频谱占用率对不同性能指标的影响。这项工作强调了将合适的信道传播模型纳入系统设计和分析中以获得现实结果和结论的重要性。

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