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Coverage and Handoff Analysis of 5G Fractal Small Cell Networks

机译:5G分形小型蜂窝网络的覆盖和切换分析

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It is anticipated that a considerably higher network capacity will be achieved by the fifth generation (5G) small cell networks incorporated with the millimeter wave (mm-wave) technology. However, the mm-wave signals are more sensitive to blockages than signals in lower frequency bands, which highlight the effect of anisotropic path loss in network coverage. According to the fractal characteristics of cellular coverage, a multi-directional path loss model is proposed for the 5G small cell networks, where different directions are subject to different path loss exponents. Furthermore, the coverage probability, association probability, and the handoff probability are derived for the 5G fractal small cell networks based on the proposed multi-directional path loss model. The numerical results indicate that the coverage probability with the multi-directional path loss model is less than that with the isotropic path loss model, and the association probability with long link distance, e.g., 150m, increases obviously with the increase of the effect of anisotropic path loss in 5G fractal small cell networks. Moreover, it is observed that the anisotropic propagation environment is having a profound impact on the handoff performance. Meanwhile, we could conclude that the resulting heavy handoff overhead is emerging as a new challenge for 5G fractal small cell networks.
机译:可以预料,结合了毫米波(mm-wave)技术的第五代(5G)小蜂窝网络将实现更高的网络容量。但是,毫米波信号比低频段的信号对阻塞更敏感,这突出了网络覆盖中各向异性路径损耗的影响。根据蜂窝覆盖的分形特征,针对5G小小区网络提出了多方向路径损耗模型,其中不同方向受到不同路径损耗指数的影响。此外,基于所提出的多向路径损耗模型,推导了5G分形小小区网络的覆盖概率,关联概率和切换概率。数值结果表明,多向路径损耗模型的覆盖概率小于各向同性路径损耗模型,并且随着各向异性效应的增加,长链路距离(例如150m)的关联概率明显增加。 5G分形小蜂窝网络中的路径损耗。而且,观察到各向异性传播环境对切换性能具有深远的影响。同时,我们可以得出结论,由此产生的沉重的切换开销正在成为5G分形小型蜂窝网络面临的新挑战。

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