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Integrated Coherent Radio-over-Fiber Units for Millimeter-Wave Wireless Access

机译:用于毫米波无线接入的集成相干光纤无线电单元

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摘要

For providing wireless access as a complementary access technology to direct optical access, supporting 1–10 Gb/s per client, we propose a novel scheme based upon the transparent integration of coherent Radio-over-Fiber (CRoF) units with next generation optical access (NGOA) networks using dense WDM and a centralized electronic signal processing in the optical line termination to mitigate distortions and to achieve low costs. This paper will concentrate on recent key technological developments that were achieved within the European IPHOBAC-NG project for constructing such CRoF units capable to provide wireless services within the E-band (60-90 GHz). In detail, GaAs-based single-sideband millimeter-wave Mach-Zehnder modulators, InP-based millimeter-wave photodiodes featuring rectangular waveguide outputs and monolithically integrated low-linewidth tunable laser diodes as well as SiGe-based millimeter-wave RF amplifier technology will be reported. In addition, a new coherent optical heterodyne radio-over–fiber scheme is proposed for seamless integration of next generation millimeter-wave wireless access systems into a next generation passive optical network employing dense or even ultra-dense WDM. We propose and demonstrate novel radio access units (RAU) using coherent optical heterodyne detection for the generation of the millimeter-wave radio signals in the RAUs. The proposed CRoF concept supports the provision of multiple services over a single optical distribution network including next generation optical and wireless access services and high-capacity fixed wireless links for mobile backhaul. Proof-of-concept system experiments are reported including the wireless transmission of a 2.5 Gb/s data signal over 40 m (limited by lab space) at 76 GHz carrier frequency after 20 km fiber-optic transmission.
机译:为了提供无线接入作为直接光接入的补充接入技术,每个客户端支持1-10 Gb / s,我们提出了一种基于相干光纤无线(CRoF)单元与下一代光接入的透明集成的新颖方案。 (NGOA)网络在光线路终端中使用密集WDM和集中式电子信号处理,以减轻失真并实现低成本。本文将集中在欧洲IPHOBAC-NG项目中实现的近期关键技术发展上,这些项目旨在构建能够在E波段(60-90 GHz)内提供无线服务的CRoF单元。详细地说,基于GaAs的单边带毫米波Mach-Zehnder调制器,基于InP的毫米波光电二极管(具有矩形波导输出和单片集成的低线宽可调激光二极管)以及基于SiGe的毫米波RF放大器技术将被报告。另外,为将下一代毫米波无线接入系统无缝集成到采用密集甚至超密集WDM的下一代无源光网络中,提出了一种新的相干光外差光纤无线电方案。我们提出并演示了使用相干光学外差检测技术在RAU中生成毫米波无线电信号的新型无线电接入单元(RAU)。提出的CRoF概念支持在单个光分布网络上提供多种服务,包括下一代光和无线访问服务以及用于移动回程的大容量固定无线链路。报告了概念验证系统实验,包括在20 km光纤传输后以76 GHz载波频率在40 m(受实验室空间限制)上无线传输2.5 Gb / s数据信号。

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