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The correlation analysis of ionospheric clutter and noise using SeaSonde HF radar

机译:SeaSonde HF雷达对电离层杂波与噪声的相关性分析

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High-frequency (HF) ground wave radar's over-the-horizon property can effectively overcome the restraints posed by the curvature of the earth. HF radar transmits low-power radar waves and its detection distance is up to several hundred kilometers. However, radar in HF bands may be easily contaminated by noise, which has temporal and spatial variability, and ionospheric interference, limiting system performance. Therefore, understanding the regional properties of noise environmental is critical. This study investigates the spatial-temporal properties of noise in long-term radar data and then analyzes the relation between noise and ionospheric indices. A comparison of the time series of ionosphere and noise indices indicates a diurnal fluctuation property. These results through cross correlation show the consistency of SUAO and HABN HF radar sites and a dramatic change of correlation coefficients over time delay. Most of the strongest negative correlations at both radar sites were found with lead time of noise index about time delay between 2 to 4 h during test period.
机译:高频(HF)地波雷达的超视距特性可以有效克服地球曲率带来的限制。 HF雷达发射低功率雷达波,其检测距离可达数百公里。但是,HF波段的雷达可能容易受到噪声的污染,噪声具有时间和空间可变性以及电离层干扰,从而限制了系统性能。因此,了解噪声环境的区域特性至关重要。本研究调查了长期雷达数据中噪声的时空特性,然后分析了噪声与电离层指数之间的关系。电离层和噪声指数的时间序列比较表明昼夜波动。通过互相关的结果表明,SUAO和HABN HF雷达站点的一致性,以及相关系数随时间延迟的急剧变化。在测试期间,两个雷达站点上大多数最强的负相关与噪声指数的提前期有关,时间延迟约为2至4 h。

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