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An investigation of the propagation of 2 GHz radio waves over sea paths

机译:对2 GHz无线电波在海上路径上传播的研究

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摘要

Three long-range 2 GHz radio paths have been established in the British Channel Islands in order to investigate the characteristics of long-range propagation of UHF radio waves over the sea as part of a project supported by Ofcom, UK. The relationship between specific over-sea propagation mechanisms (such as evaporation ducting and super-refraction) in the lower troposphere and signal strength distribution patterns has been examined, modelled and correlated with meteorological parameters. A number of radio meteorological statistics specifically related to evaporation duct propagation in a temperate region such as the English Channel has been presented to confirm the capability of this key propagation mechanism to guide radio waves to distances well beyond the normal radio horizon. Evaporation ducting and diffraction appear to be the dominant propagation mechanisms at most times. Signal strength enhancements have been observed on all three radio paths, primarily in the late afternoon and evening periods, in the spring and summer months. During periods of enhanced propagation, which occur approximately 8% of the time of a 50 km path, the presence of additional higher-level ducting/super-refractive structures has been verified and their influence has been modelled with reasonable success. Additionally, the statistical variation of bulk meteorological parameters in the context of enhanced signal propagation has also been examined. The relatively long-term observations made during this study confirm the fact that the constantly changing weather patterns in the troposphere (e.g. the occurrence of anticyclonic weather) are directly responsible for the occurrence of enhanced signals at certain periods of time. The various issues under investigation are of direct relevance in the planning of radio communication systems operating in the UHF band (e.g. GSM and UMTS) in marine and coastal regions.
机译:作为英国Ofcom支持的项目的一部分,英属海峡群岛已建立了3条2 GHz远程无线电路径,以研究UHF无线电波在海上的远程传播特性。对流层低层中特定的海洋传播机制(如蒸发导管和超折射)与信号强度分布模式之间的关系已经过检查,建模并与气象参数相关。已经提出了许多与温带地区(例如英吉利海峡)中蒸发管传播特别相关的无线电气象统计数据,以确认这种关键传播机制能够将无线电波引导到远超出正常无线电视野的距离。在大多数情况下,蒸发导管和衍射似乎是主要的传播机制。在所有三个无线电路径上都观察到信号强度增强,主要是在春季和夏季的下午和晚上。在增强传播期间(大约发生50 km路径的时间的8%),已经验证了是否存在其他更高级别的导管/超折射结构,并且已成功模拟了它们的影响。另外,还研究了增强的信号传播情况下大气象参数的统计变化。在这项研究中进行的相对长期的观察证实了这样一个事实,即对流层中不断变化的天气模式(例如,反气旋天气的发生)直接导致某些时间段内增强信号的出现。正在调查的各种问题与海洋和沿海地区在UHF频段(例如GSM和UMTS)中运行的无线电通信系统的规划直接相关。

著录项

  • 作者

    Gunashekar, Salil David;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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