Studies on a Next Generation Access Technology Using Radio over Free-Space Optic Links

K. Kazaura, P. Dat, A. Shah, Toshiji Suzuki, K. Wakamori, M. Matsumoto, T. Higashino, K. Tsukamoto, S. Komaki
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引用次数: 13

Abstract

With the continuous emergence of new innovative wireless technologies, standards, services and applications, there is an increase demand for technologies, preferably broadband, for providing seamless connectivity between the various networks elements. This paper proposes an innovative Radio over Free-Space Optics (RoFSO) communication system having potential to be a cost-effective and reliable technology for bridging these various networks facilities. The proposed system can be utilized as a next generation access technology suitable for transmission of heterogeneous wireless service signals especially in areas which lack broadband connectivity. Using an experimental free-space optical (FSO) communication system capable of transmitting RF signals, we conduct initial investigations focusing on studying the deployment environment characteristics which influence the performance of RoFSO systems. Preliminary propagation measurement results characterizing the effects of atmospheric influence on transmission of RF signal using FSO links are presented. The results show that in the absence of strong atmospheric turbulence or severe weather conditions, RoFSO system can effectively be used as access technology for transmission of broadband heterogeneous wireless services signals.
基于自由空间光链路的下一代无线接入技术研究
随着新的创新无线技术、标准、服务和应用不断涌现,对技术(尤其是宽带)的需求不断增加,以便在不同网络要素之间提供无缝连接。本文提出了一种创新的自由空间光学无线电(RoFSO)通信系统,它有可能成为桥接这些不同网络设施的成本效益高且可靠的技术。该系统可作为下一代接入技术,特别适用于在缺乏宽带连接的地区传输异构无线业务信号。利用一种能够传输射频信号的实验性自由空间光学(FSO)通信系统,我们进行了初步的研究,重点研究了影响FSO系统性能的部署环境特征。本文给出了大气对FSO链路中射频信号传输影响的初步传播测量结果。结果表明,在没有强大气湍流或恶劣天气条件下,RoFSO系统可以有效地作为宽带异构无线业务信号传输的接入技术。
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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