面向物联网应用的新型多集群5G网络设计

Tasnim Irtifa Chowdhury, M. Mowla
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引用次数: 0

摘要

最近,第五代(5G)无线标准正在进入实施阶段,一些初步的设计概念和想法。5G标准三角是为支持增强型移动宽带、大规模机器型通信和用户超可靠通信而设计的。该设计目标的主要内容之一是为低功耗的大型小型设备提供互联网,即物联网(IoT)。在这个方向上,5G技术已经开始确保下一代用户的物联网连接。单集群方法不能保证高吞吐量和低块错误率。在本文中,我们利用5G的设施设计了一种新型的多集群5G网络,用于物联网应用。使用适合的UMa(城市-宏观)和UMa3D(城市-宏观-三维)路径损失模型对网络进行了系统分析,用于femto cell (FC)和pico cell (PC)配置。我们的研究表明,UMa3D和微蜂窝配置的信噪比(SINR)和吞吐量优于同类产品。我们还发现,对于相同的配置,通过保持微不足道的块错误率(BLER)差异,在广泛的用户范围内可以获得稳定的吞吐量。因此,所提出的网络似乎非常有希望实际实施。
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Design of a novel multi-clustered 5G network for IoT applications
Recently, fifth generation (5G) wireless standard is entering into the implementation stage with some of the initial design concepts and ideas. The 5G standard triangle is designed for supporting enhanced mobile broadband, massive machine type communication, and ultra reliable communication for the users. One of the major inclusions of this design targets is to provide internet to the huge small devices with low power, Internet of Things (IoT). In this direction, 5G technology has started to ensure IoT connectivity for the next generation users. The single clustering approach does not ensure the high throughput with low block error rate. In this paper, we have used the facilities of 5G to design a novel multi-clustered 5G network for IoT applications. A systematic analysis of the network is performed using well-suited UMa (urban-macro), and UMa3D (urban-macro-3-dimensional) path-loss models, for femto cell (FC) and pico cell (PC) configurations. Our investigation shows the superior performances of signal-to-interference-noise ratio (SINR), and throughput for UMa3D and pico cell configuration than their counterpart. We also find stable throughput over a wide range of users for the same configuration through maintaining insignificant block error rate (BLER) difference. Therefore, the proposed network seems very promising for practical implementation.
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