Correlation Between HF Interference at Low and High Elevation Angle

A. Constantinides, H. Haralambous
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Abstract

Interference from other users in the High Frequency (HF) spectrum (3–30 MHz) is an established consequence as a result of the long distance propagation of HF signals and the high level of the HF spectrum usage on a global scale. One crucial factor affecting HF interference conditions is the angle of arrival of HF signals which depends on antenna radiation pattern characteristics. In this study we perform an analysis based on an extended dataset of 280 days of electric field measurements within an interval of more than a year (Jan 2021-Feb 2022) collected at low and high incident elevation angles by a R&S HE016 antenna installed in Nicosia, Cyprus. This extended dataset enables the examination of the correlation of signals received by these two different antenna components and how this correlation varies as a function of frequency across the HF spectrum. The ultimate aim is to indicate the possible benefit from the possible introduction of elevation angle as a model parameter to existing HF interference model formulations in order to better characterize the HF interference environment over the eastern Mediterranean region.
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低、高仰角高频干扰的相关性研究
高频(HF)频谱(3 - 30mhz)中来自其他用户的干扰是HF信号长距离传播和全球范围内高频频谱高水平使用的必然结果。影响高频干扰条件的一个关键因素是高频信号的到达角,这取决于天线的辐射方向图特性。在这项研究中,我们基于安装在塞浦路斯尼科西亚的R&S HE016天线在低入射仰角和高入射仰角下收集的280天电场测量的扩展数据集(2021年1月至2022年2月)进行分析。这个扩展的数据集可以检查这两种不同天线组件接收到的信号的相关性,以及这种相关性如何随着高频频谱频率的变化而变化。最终目的是指出将高程角作为模型参数引入现有高频干扰模型公式可能带来的好处,以便更好地表征地中海东部地区的高频干扰环境。
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