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Millimeter Wave Hybrid Photonic Wireless Links for High-Speed Wireless Access and Mobile Fronthaul

机译:用于高速无线接入和移动前传的毫米波混合光子无线链路

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摘要

As the introduction of the fifth generation of mobile services (5G) is set to revolutionize the way people, devices and machines connect, the changes to the underlying networks and technologies are no less drastic. The massive increase in user and data capacity, as well as the decrease in latency require a complete re-thinking of radio access networks – one important aspect of which is the introduction of millimeter wave communications, which is expected to play a key role. Millimeter wave hybrid photonic wireless links seamlessly merge the wired optical and wireless radio network segments and combine the best of both technologies, offering very large capacity and bridging long distances with optical fiber, while retaining the flexibility and easy deployment of wireless communications.The research in this thesis experimentally investigates millimeter wave (mmw) hybrid photonic wireless links, demonstrating their potential and pushing their implementation beyond the state of the art. While touching upon a multitude of aspects, the contributions can mostly be classified in three larger groups: first, the demonstration of mmw radio-over-fiber (rof) links in various configurations of reduced complexity, real-time enabled and almost ready for deployment. Second, the use of advanced modulation formats to increase the capacity and spectral efficiency of mmw rof links, to enhance their robustness against channel impairments and to allow flexible resource allocation. Therein, a significant increase of spectral efficiency is achieved for rof links in W-band using multi-band carrierless amplitude phase modulation (multicap), the first experimental validation of wavelet coding for robustness against frequency fading is performed, and the combination of multicap with non-orthogonal multiple access for flexible user and resource allocation is suggested and experimentally demonstrated. Third, the integration of mmw rof links with optical networks and the resulting impact on the design and architecture of the remote station, performing heterodyne up-conversion, is considered, demonstrating real-time transmission with a fully reconfigurable remote station. The thesis further contains work on optical vector network analysis as an efficient tool for the characterization of optical space division multiplexing fibers and components – as a prerequisite for their future use in mmw rof links and radio access networks.In summary, the work presented in this thesis has regarded a multitude of aspects of millimeter wave hybrid photonic wireless links, expanding upon the state of the art and showing their feasibility for use in fifth generation mobile and high speed wireless access networks – hopefully bringing them a small step closer to adoption in deployed networks.
机译:随着第五代移动服务(5G)的推出将彻底改变人,设备和机器的连接方式,对底层网络和技术的改变也同样巨大。用户和数据容量的大量增加以及等待时间的减少要求对无线电接入网络进行彻底的重新思考-其中一个重要方面是引入毫米波通信,预计它将发挥关键作用。毫米波混合光子无线链路无缝地融合了有线光学和无线无线电网段,并结合了这两种技术的优点,可提供超大容量并通过光纤桥接长距离,同时保留了无线通信的灵活性和易部署性。本文通过实验研究毫米波(mmw)混合光子无线链路,展示了其潜力,并将其实现推向了最先进的水平。在涉及多个方面时,可以将贡献大致分为三个较大的组:首先,以降低复杂性,实时启用且几乎准备部署的各种配置来演示mmw光纤无线电(rof)链路。第二,使用高级调制格式来增加mmw rof链路的容量和频谱效率,增强其针对信道损害的鲁棒性并允许灵活的资源分配。其中,使用多频带无载波幅度相位调制(multicap)为W波段中的rof链路实现了频谱效率的显着提高,进行了小波编码对频率衰落的鲁棒性的首次实验验证,并将multicap与提出并实验证明了非正交多址访问,以实现灵活的用户和资源分配。第三,考虑了mmw rof链路与光网络的集成,以及对进行外差式上变频的远程站的设计和体系结构的影响,这表明了完全可重新配置的远程站的实时传输。本文还包含有关光矢量网络分析的工作,作为表征空分复用光纤和组件的有效工具,这是它们将来在mmw rof链路和无线电接入网中使用的先决条件。总而言之,本文介绍的工作论文考虑了毫米波混合光子无线链路的多个方面,对现有技术进行了扩展,并展示了其在第五代移动和高速无线接入网络中使用的可行性–希望使它们在已部署的部署中走近一小步网络。

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