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5G无线和光接入网络中用于增强协作多点(CoMP)服务的前传灵活性的实验演示。

Experimental demonstration of fronthaul flexibility for enhanced CoMP service in 5G radio and optical access networks.

作者信息

Zhang Jiawei, Ji Yuefeng, Yu Hao, Huang Xingang, Li Han

出版信息

Opt Express. 2017 Sep 4;25(18):21247-21258. doi: 10.1364/OE.25.021247.

Abstract

The RAN architecture towards mobile 5G and beyond is undergoing a fundamental evolution, which brings optics into the radio world. Fronthaul is a new segment that leverages on the advantages of optical communication for RAN transport. However, the current fronthaul architecture shows a fixed connection between an RRH and a BBU, which leads to inefficient resource utilization. In this paper, we focus on the fronthaul flexibility that allows "any-RRH to any-BBU" connection. In particular, we consider a CoMP service and discuss how flexible optical fronthaul helps to improve its performance. To achieve this goal, we propose an SDN-enabled orchestration for coordinating radio and optical access networks. Under this unified control manner, the agile RRH-BBU mapping can be reached through lightpath reconfiguration. To further verify the benefits of flexibility, we experiment the CoMP service in the cloud radio over flexible optical fronthaul (CRoFlex) testbed. Experimental results demonstrate the proposed SDN-enabled flexible optical fronthaul can improve the CoMP performance by optimizing the RRH-BBU mapping.

摘要

面向移动5G及以后的无线接入网络(RAN)架构正在经历根本性的演进,这将光学技术引入了无线领域。前传是利用光通信优势进行RAN传输的一个新领域。然而,当前的前传架构显示出远程射频头(RRH)和基带单元(BBU)之间的固定连接,这导致资源利用效率低下。在本文中,我们关注允许“任意RRH到任意BBU”连接的前传灵活性。特别是,我们考虑一种协作多点(CoMP)服务,并讨论灵活的光前传如何有助于提高其性能。为实现这一目标,我们提出了一种基于软件定义网络(SDN)的编排,用于协调无线接入网和光接入网。在这种统一控制方式下,可通过光路重新配置实现灵活的RRH-BBU映射。为进一步验证灵活性的好处,我们在灵活光前传云无线接入(CRoFlex)试验平台上对CoMP服务进行了实验。实验结果表明,所提出的基于SDN的灵活光前传可通过优化RRH-BBU映射来提高CoMP性能。

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