Research on Antenna Altitude Setting of Shore-base Microwave Over-The-Horizon Radar

Wei Song, Hang Zhu, Ming Tan, Haiyan Lv
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Abstract

Evaporation duct can increase radar detection range remarkably. Since this characteristic, the shore-based microwave over-the-horizon radar could be set on islands for sea area having no mountains and far away from main land, which can monitor distant targets on the sea continuously and efficiently. In order to find the best antenna altitude for shore-based microwave radar installed in tropic water island-reefs of Western Pacific, the statistic probability of evaporation duct heights were made and the average detect ranges were simulated for different radar frequency and antenna altitude with marine hydrometeorology data collected in recent 50 years, using the method of predicting radar detection range on the condition of evaporation duct. The Statistical results show that evaporation duct often occurs on the sea of Western Pacific, and the duct heights are always over 10 m. As a result, the average radar detection ranges are well above line-of-sight distance, which means it is very propitious to set shore-based microwave over-the-horizon radar. By comparison, OTH radar of C or X band is more suitable to be fixed on South China Sea than S or Ku band radar. When frequency is about 9 GHz and antenna altitude is at about 10m, the radar would get the furthest detection range.
岸基微波超视距雷达天线高度设置研究
蒸发风道能显著提高雷达探测距离。由于这一特点,岸基微波超视距雷达可以在远离陆地、无山海域的岛屿上设置,对海上远距离目标进行连续有效的监测。为了寻找西太平洋热带水域岛礁岸基微波雷达的最佳天线高度,利用近50年的海洋水文气象资料,利用蒸发风道条件下的雷达探测距离预测方法,对不同雷达频率和天线高度下的平均探测距离进行了统计概率模拟。统计结果表明,西太平洋海域经常出现蒸发风道,且风道高度均在10 m以上。因此,雷达的平均探测距离远高于视线距离,这意味着非常有利于设置岸基微波超视距雷达。通过比较,C波段和X波段的OTH雷达比S波段和Ku波段的雷达更适合在南海固定。当频率在9ghz左右,天线高度在10m左右时,雷达的探测距离最远。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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