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Investigation into the Effects of the Troposphere on Vhf and Uhf Radio Propagation and Interference between Co-Frequency Fixed Links

机译:对流层对Vhf和Uhf无线电传播的影响以及同频固定链路之间的干扰的研究

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摘要

Previous studies on anomalous, over-sea propagation have been either focused on single links employing space/antenna diversity or on point-to-multipoint links, usually involving single frequency. Measurements on two co-linear, trans-horizon paths (50km and 140km long) over the English Channel have been made over periods in excess of a year in order to investigate the propagation characteristics of VHF and UHF signals propagating over the sea. The setup comprises a transmitter located on Jersey and receivers on Alderney and Portland. Signal strengths, meteorological factors within the lowest 1km as well as their mutual relationships have been studied.\udSignal strength enhancements have been observed on both paths, primarily in the late afternoon and evening periods, in the spring and summer months. These enhancements occur for different percentages of time between 12% and 21%. It was observed that the enhancements at both receiving sites and both frequencies may/may not be concurrent, leading to a probability of interference. The values of median lapse rate of refractivity in lowest 1km of atmosphere, effective earth radius factor and surface refractivity significantly less than those used by ITU have been observed. Refractivity gradients indicative of super-refraction and ducting are observed between heights of 52m and 84m for considerable amounts of time. Different current propagation models have been used to predict the median propagation loss values, which do not always clearly point out the dominant propagation mechanisms.\udThis study has made available further results regarding enhanced signal strength events, has improved the values of some critical parameters linked to tropospheric propagation and has identified certain trends relating weather to signal level enhancements. These issues bear direct relevance to radio propagation in marine and coastal areas.
机译:先前关于异常,海外传播的研究要么集中在利用空间/天线分集的单链路上,要么集中在通常涉及单频的点对多点链路上。为了调查在海上传播的VHF和UHF信号的传播特性,在超过1年的时间内对英吉利海峡上的两条共线性,超视距路径(长50公里和140公里)进行了测量。该设置包括位于泽西岛的发射器以及位于奥尔德尼和波特兰的接收器。研究了信号强度,最低1 km内的气象因素及其相互关系。\ ud在两条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。这些增强会在12%到21%的不同时间百分比内发生。观察到,在两个接收站点和两个频率处的增强可能/可能不是同时发生的,从而导致了干扰的可能性。观察到最低的1 km大气中折射率的中值消失率,有效地球半径因子和表面折射率的值明显小于ITU使用的值。在相当长的时间内,在52m和84m的高度之间观察到指示超折射和导管现象的折射率梯度。已使用不同的电流传播模型来预测中值传播损耗值,但并不总是清楚地指出主导的传播机理。\ ud这项研究提供了有关增强信号强度事件的进一步结果,改善了一些关键参数的值与对流层传播有关,并确定了与天气与信号水平增强有关的某些趋势。这些问题与海洋和沿海地区的无线电传播直接相关。

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    Mufti, Naveed;

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  • 年度 2012
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