A Comparison of Optical Transport Technologies for Wireless Communications Using Optical Ground Wire in Smart Grid

K. Ikeda, C. Lim, A. Nirmalathas, Chathurika Ranaweera
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引用次数: 1

Abstract

Realization of smart grid is a big challenge for not only electrical power grid but also communication network, because real time and highly reliable mission critical communication network based on wireless communications will be indispensable. Furthermore, requirements of wideband communication network for sensing and monitoring utilities and maintenance works are also increasing. To realize future communication network cost-effectively and energy-efficiently, centralized radio access network architecture that use optical fiber based fronthaul network has attracted attention from both academia and industry. In this paper, we propose a design of wireless access network using existing optical ground wires for centralized radio access network architecture for the first time. In the proposed configuration, remote radio heads on transmission towers are arranged linearly. We investigate the applicability of optical data transport technologies of physical layer split, analog radio-on-fiber, and common public radio interface. Finally, we comparatively analyze the deployment costs under different transport technologies and our results show that physical layer split and analog radio-on-fiber with subcarrier multiplexing result in lower cost than other technologies.
智能电网中使用光地线的无线通信光传输技术比较
智能电网的实现不仅对电网,而且对通信网络都是一个巨大的挑战,因为基于无线通信的实时、高可靠的关键任务通信网络是必不可少的。此外,传感和监测公用事业及维修工程对宽带通信网络的需求也在增加。为了经济高效、节能地实现未来通信网络,采用光纤前传网络的集中式无线接入网架构受到了学术界和工业界的广泛关注。本文首次提出了一种利用现有光地线进行集中式无线接入网架构的无线接入网设计。在建议的配置中,发射塔上的远程无线电头是线性排列的。我们研究了物理层分割、模拟光纤无线电和公共无线电接口的光数据传输技术的适用性。最后,我们比较分析了不同传输技术下的部署成本,结果表明,物理层拆分和模拟光纤无线电与子载波复用的部署成本低于其他技术。
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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