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Application of Doppler Radar for Measurement of Current Velocity at Small Incidence Angles: The First Experiments at the River

机译:多普勒雷达在小型入射角下测量电流速度的应用:河流的第一个实验

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Measuring the global field of sea currents is an important task, therefore, several projects of orbital radars designed to solve the problem are developing in parallel. To measure sea currents, it is proposed to use Doppler radars that will operate at small or middle incidence angles. However, there are virtually no measurements of the Doppler spectrum (DS) at small incidence angles, thus the series of DS measurements carried out in the fall of 2019 in the range of incidence angles of 0°-25° is unique. The paper presents the results of measuring the DS of the backscattered microwave signal for a stationary river current. Doppler radar was mounted on a bridge over the Oka River (Nizhny Novgorod) at an altitude of about 30 m. The first results of the radar data processing show that the river current strongly affects the DS shape and leads to an additional shift of the DS compared to that in the absence of current. Comparison of the theoretical model of the DS with the measured DS has shown good results.
机译:测量海流的全球领域是一项重要任务,因此,旨在解决问题的轨道雷达的几个项目并行发展。为了测量海流,建议使用将以小或中间入射角运行的多普勒雷达。然而,在小入射角下几乎没有测量多普勒频谱(DS),因此在2019年秋季在0°-25°的入射角的秋季进行的一系列DS测量是独特的。本文介绍了测量静止河流电流的反向散射微波信号的DS的结果。多普勒雷达安装在Oka河(Nizhny Novgorod)的桥上,海拔大约30米。雷达数据处理的第一个结果表明,河流电流强烈影响DS形,并导致DS的额外偏移与在没有电流的情况下。与测量DS的DS理论模型的比较显示出良好的效果。

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