Design of cellular backhaul topology using the FSO technology

Yuan Li, M. Pióro, Vangelis Angelakisi
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引用次数: 34

Abstract

The increasing number of mobile devices and high-speed services accelerate the growth of traffic in cellular backhaul networks. The traditional technologies used in the backhaul, copper, radio links and optical fibers, either cannot offer high data-rate, or are expensive. In this paper, we propose mixed integer programming models to facilitate upgrading the cellular backhaul using the free space optical (FSO) technology, a cost-effective and high-bandwidth solution. Since the optical signal is transmitted along line-of-sight and FSO links are sensitive to weather conditions, we incorporate mirrors in the models to provide alternative paths for pairs of FSO nodes without line-of-sight, and increase the path diversity to enhance the resilience. Optical fibers existing in the backhaul are considered in the models and reused to decrease the upgrading cost and improve reliability. The presented models can deliver topologies for various requirements on cost and resilience. They can also be used to develop topology planning and optimization tools.
基于FSO技术的蜂窝回程拓扑设计
越来越多的移动设备和高速业务加速了蜂窝回程网络流量的增长。在回程中使用的传统技术,如铜线、无线电链路和光纤,要么不能提供高数据速率,要么价格昂贵。在本文中,我们提出了混合整数规划模型,以促进使用自由空间光(FSO)技术升级蜂窝回程,这是一种经济高效的高带宽解决方案。由于光信号沿视距传输,而FSO链路对天气条件敏感,我们在模型中加入反射镜,为无视距的FSO节点对提供可选路径,并增加路径分集以增强弹性。为了降低升级成本和提高可靠性,模型中考虑了回程中存在的光纤,并重复使用。所提出的模型可以为各种成本和弹性需求提供拓扑。它们还可以用于开发拓扑规划和优化工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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