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Free space optics/millimeter-wave based vertical and horizontal terrestrial backhaul network for 5G

机译:可自由空间光学/毫米波的垂直和水平地面回程5G

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The exponential increase of mobile users and high-speed data driven applications, along with the demand for IoT based services have resulted in a significant congestions in cellular backhaul network. An essential feature requirement for 5G backhaul networks is their ultimate capacity to handle not only human centric traffic, but also machine centric traffic including interconnected vehicles, machines and networks. The hybrid concept of Free Space Optics/Millimeter-Wave technology emerges as a suitable complementary solution platform for next-generation communication networks. In this paper, we have investigated the feasibility of ground station backhaul network. In this approach, a flying network platforms passage the backhaul traffic between the access and the core networks via point-to-point RF/FSO links. We use numerical and analytical results to analyze the performance of the proposed free space optics/millimeter-wave based vertical and horizontal terrestrial backhaul network under different adverse weather conditions, such as the atmospheric turbulence and attenuation. The detrimental effects such as longitudinal pulse broadening of the signal (which is a major reason behind group velocity dispersion (GVD)) and misalignment between the transmitter and the receiver (which is the reason behind pointing errors) are also included in this study. Taking into account these effects, based on Meijer G-function a closed-form analytical expression is derived. The performance is analyzed in terms of probability of fade, threshold and outage probability using receiver diversity over gamma-gamma channel model. These results are useful in designing and deploying a RF/FSO vertical and horizontal backhaul link for 5G communication system.
机译:移动用户和高速数据驱动应用的指数增加以及对基于机置的服务的需求导致蜂窝回程网络中的显着拥塞。 5G回程网络的基本特征要求是它们不仅可以处理人类以人的流量处理的最终能力,而且还可以为机器为中心的流量,包括互联的车辆,机器和网络。自由空间光学/毫米波技术的混合概念作为下一代通信网络的合适互补解决方案平台。在本文中,我们研究了地面站回程网络的可行性。在这种方法中,飞行网络平台通过点对点RF / FSO链路通过访问和核心网络之间的回程流量。我们使用数值和分析结果分析不同恶劣天气条件下提出的自由空间光学/毫米波基垂直和水平地面回程网络的性能,例如大气湍流和衰减。该研究还包括在该研究中的诸如纵向脉冲扩大信号的纵向脉冲扩大(这是群体速度色散(GVD)的错误)以及发射器和接收器之间的错位(这是指向误差背后的原因)。考虑到这些效果,基于Meijer G-Function,推导出闭合形式的分析表达式。在伽马 - 伽马通道模型上使用接收器分集,在淡入衰落,阈值和中断概率的概率方面进行分析性能。这些结果可用于设计和部署5G通信系统的RF / FSO垂直和水平回程链路。

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