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首页> 外文期刊>International journal of applied mechanics >Demonstration of a hybrid optical fiber-wireless 5G fronthaul coexisting with end-to-end 4G networks
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Demonstration of a hybrid optical fiber-wireless 5G fronthaul coexisting with end-to-end 4G networks

机译:用端到端4G网络演示混合光纤无线5G Fronthaul共存

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摘要

The plethora of services envisaged to support 5G use-cases requires the development of a radio access network (RAN) infrastructure with the capability to integrate a variety of user-demanded mobile traffic characteristics. It is therefore interesting to study a 5G deployment scenario showcasing heterogeneous transmission. In order to address this challenge, in this paper, we propose and experimentally assess a coarse-wavelength-division-multiplexing-compatible optical access network for joint provisioning of 4G/5G RAN services, supporting the coexistence of both digital and analog radio-over-fiber (ARoF) fronthauling. Resorting to an integrated testbed, we demonstrate the transport of 100 MHz 5G downlink using low-latency and bandwidth-efficient ARoF over 8 km fiber, seamlessly coexisting on the same fronthaul infrastructure with a legacy full-fledged 4G long-term evolution (LTE) network supported by Ethernet-based digital RoF with different functional splits. In addition, we experimentally demonstrate the successful operation of the 4G/5G system in a hybrid fiber-wireless scenario including a free-space optics fronthaul extension with 55 m. The proposed heterogeneous RAN architecture is demonstrated to provide a flexible and robust integration path for novel 5G technologies, enabling their coexistence with currently deployed 4G LTE systems over a shared fronthaul infrastructure. (C) 2020 Optical Society of America
机译:设想为支持5G使用情况的大型服务需要开发无线电接入网络(RAN)基础架构,能够集成各种用户要求的移动流量特性。因此,研究展示异构传输的5G部署场景是有趣的。为了解决这一挑战,在本文中,我们提出并通过实验评估了一种用于联合供应的粗波分复用兼容的光学接入网络,用于共同供应4G / 5G RAN服务,支持数字和模拟收音机的共存 - Fiber(Arof)Frontonulling。借助综合测试平台,我们使用低延迟和带宽高效的AROF展示了100 MHz 5G下行链路的运输,在8公里的光纤上,在同一FRONTHAUL基础设施中无缝共存,具有遗留的全面4G长期演进(LTE)基于以太网的数字ROF支持的网络,具有不同的功能分配。此外,我们实验证明了4G / 5G系统在混合纤维无线场景中的成功运行,包括具有55米的自由空间光学弗隆坦延伸。所提出的异构RAN架构被证明为新颖的5G技术提供灵活且强大的集成路径,使其在共享Fronthaul基础架构上与当前部署的4G LTE系统共存。 (c)2020美国光学学会

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