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On opportunistic spectrum access in radar bands: Lessons learned from measurement of weather radar signals

机译:关于雷达频段的机会频谱接入:从气象雷达信号测量中学到的经验教训

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The need for extra spectrum and the fact that a large amount of spectrum below 6 GHz is allocated to radar systems has motivated regulatory bodies and researchers to investigate the feasibility of dynamic spectrum access in radar bands. To design efficient wireless communication schemes that coexist with radar systems, it is essential that the wireless community thoroughly understand the operations of these systems in different bands. This article studies incumbent operations and usage patterns in the 5 GHz band, where weather radar systems dominate, dynamic frequency selection is employed as a sharing mechanism, and recent works have explored the possibility to temporally share the spectrum with such radar systems. We present a measurement-based study of spectrum usage by a weather radar in Finland. Our measurement results show that the weather radar's scan patterns are quasi-periodic, and that use of sensing may not reliably detect radar signals due to its quasi-periodic scanning patterns and different vertical scanning angles. Finally, we present a framework for a database-assisted temporal sharing coexistence mechanism that takes into account the real occupancy behavior of the radar.
机译:对额外频谱的需求以及将低于6 GHz的大量频谱分配给雷达系统这一事实激励了监管机构和研究人员研究雷达频段中动态频谱接入的可行性。为了设计与雷达系统共存的高效无线通信方案,至关重要的是,无线社区必须全面了解这些系统在不同频段的运行情况。本文研究了天气雷达系统占主导地位,采用动态频率选择作为共享机制的5 GHz频带中的现有运营和使用模式,最近的工作探索了与此类雷达系统在时间上共享频谱的可能性。我们介绍了芬兰气象雷达对频谱使用情况进行的基于测量的研究。我们的测量结果表明,天气雷达的扫描模式是准周期的,并且由于其准周期扫描模式和不同的垂直扫描角度,使用感应可能无法可靠地检测雷达信号。最后,我们提出了一个数据库辅助的时间共享共存机制的框架,该框架考虑了雷达的实际占用行为。

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