Hybrid FSO/mmWave based Fronthaul C-RAN Optimization for Future Wireless Communications

Nagwa Ibrahim, A. Eltholth, M. El-Soudani
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引用次数: 1

Abstract

Cloud radio access network (C-RAN) architecture is actively considered as a major candidate for future wireless communications. The aerial communication network such as high altitude balloon (HAB) is used to transport the fronthaul among radio transceivers and processing units. Both free space optic (FSO) and millimeter wave (mmWave) are promising technologies, but each one has its impairments that affect its efficiency under different weather conditions. So, a hybrid channel is considered to match with the requirements of fronthaul networks. This paper aims to optimize the hand over process between FSO and mmWave channels to maximize the sum data rate for the fronthaul in C-RAN architecture. The problem is formulated as an integer linear programming (ILP) problem. The mathematical programming is applied on the hybrid transmission technology FSO/mmWave channel. The obtained numerical results indicate the potential of hybrid FSO/mmWave channel in counteracting the effect of different weather conditions.
基于FSO/毫米波混合前传C-RAN优化的未来无线通信
云无线接入网(C-RAN)架构被积极认为是未来无线通信的主要候选者。采用高空气球(HAB)等空中通信网络在无线电收发器和处理单元之间传输前传信息。自由空间光学(FSO)和毫米波(mmWave)都是很有前途的技术,但每种技术都有其缺陷,会影响其在不同天气条件下的效率。因此,考虑采用混合信道来满足前传网络的要求。本文旨在优化FSO和毫米波信道之间的切换过程,以最大限度地提高C-RAN架构中前传的总数据速率。该问题被表述为整数线性规划(ILP)问题。将数学规划应用于FSO/毫米波信道混合传输技术。数值结果表明了FSO/毫米波混合信道在抵消不同天气条件影响方面的潜力。
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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