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Analysis of Close Range Evaporation Duct Inversion from LATPROP Radar Data Collected During CASPER West Research Campaign

机译:Casper West Research Campaign收集的拉脱雷达数据近距离蒸发管道反演分析

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Refractive atmospheric conditions at low altitudes can have a significant impact on electromagnetic signals propagating at low grazing angles in many coastal regions. Refractivity from clutter (RFC) is a technique that refers to the estimation of an atmospheric refractivity profile from radar sea clutter returns. The RFC algorithm obtains the simulated clutter pattern that has the best fit to the collected radar data. RFC is traditionally performed with the minimum range not starting before 10 km. This is because there are large fluctuations in the grazing angle of an electromagnetic signal when an evaporation duct is present. This paper proposes using a commercial Koden MDS-63R marine radar architecture converted for increased sea clutter sensitivity and implementing a modified version of the Georgia Institute of Technology (GIT) model to perform RFC inversions starting on the first kilometer of the returned clutter power. Radar data for testing the procedure was collected in Southern California at Pt. Mugu from September to October 2017 as part of the coupled Air-Sea Processes and EM ducting research (CASPER) West Campaign. Validation data was also collected during the campaign and consist of buoy in situ bulk measurements of air temperature, humidity, wind speed, and sea surface temperature.
机译:低海拔处的折射大气条件可对许多沿海地区的低放牧角度传播的电磁信号产生重大影响。杂波(RFC)的折射率是一种技术,其是指来自雷达海杂波返回的大气折射曲线的估计。 RFC算法获得了最适合于收集的雷达数据的模拟杂波图案。传统上,RFC在10公里之前未启动的最小范围。这是因为当存在蒸发管道时,电磁信号的放牧角度存在大的波动。本文建议使用商业Koden MDS-63R海洋雷达架构转换为增加的海洋杂波敏感性,实现了佐治亚理工学院(Git)模型的修改版,以执行返回杂波功率的第一公里开始的RFC逆转。用于测试该程序的雷达数据被收集在Pt的南部加利福尼亚州。 Mugu从9月到2017年10月作为耦合海上流程的一部分和EM管道研究(Casper)West Campaign。在活动期间还收集了验证数据,并由浮标批量批量测量的空气温度,湿度,风速和海表面温度组成。

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