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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Impact of Receiver Saturation on Surface Doppler Velocity Measurements From the EarthCARE Cloud Profiling Radar
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Impact of Receiver Saturation on Surface Doppler Velocity Measurements From the EarthCARE Cloud Profiling Radar

机译:接收器饱和度对EarthCARE云剖析雷达的表面多普勒速度测量的影响

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摘要

Antenna-pointing techniques that rely on Earth's surface Doppler velocity measurements are expected to play a crucial role in enabling antenna mispointing corrections in spaceborne radar systems. Here, the impact of the EarthCARE cloud profiling radar (CPR) receiver saturation on the quality of the surface Doppler velocity measurements is discussed. The CPR linear receiver is expected to saturate always from surface echoes. Our results based on an $I/Q$ simulation framework show that for the EarthCARE radar configuration: 1) biases introduced by saturation will be negligible; 2) the standard deviation of the velocity estimates will increase by 30–50% when moving from unsaturated to completely saturated surface return for a corresponding pulse repetition frequency in the range between 6.1 and 7.5 kHz. As a consequence longer integration times will be necessary to achieve the same accuracy in presence of complete saturation.
机译:依靠地球表面多普勒速度测量结果的天线指向技术有望在星载雷达系统中实现天线指向错误的校正中发挥关键作用。在此,我们讨论了EarthCARE云分析雷达(CPR)接收器饱和度对表面多普勒速度测量质量的影响。预期CPR线性接收器总是会因表面回波而饱和。我们基于 $ I / Q $ 模拟框架的结果表明,对于EarthCARE雷达配置:1)偏差饱和引起的引入可以忽略不计; 2)当在6.1至7.5 kHz之间的相应脉冲重复频率从不饱和表面返回到完全饱和的表面返回时,速度估计的标准偏差将增加30-50%。因此,在完全饱和的情况下,需要更长的积分时间才能达到相同的精度。

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