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Reflected ray retrieval from radio occultation data using radio holographic filtering of wave fields in ray space

机译:从射线空间中使用无线电全息滤波的无线电覆盖数据反射射线检索

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摘要

Linear and non-linear representations of wave fields constitute the basis of modern algorithms for analysis of radio occultation (RO) data. Linear representations are implemented by Fourier Integral Operators, which allow for high-resolution retrieval of bending angles. Non-linear representations include Wigner Distribution Function (WDF), which equals the pseudo-density of energy in the ray space. Representations allow for filtering wave fields by suppressing some areas of the ray space and mapping the field back from the transformed space to the initial one. We apply this technique to the retrieval of reflected rays from RO observations. The use of reflected rays may increase the accuracy of the retrieval of the atmospheric refractivity. Reflected rays can be identified by the visual inspection of WDF or spectrogram plots. Numerous examples from COSMIC data indicate that reflections are mostly observed over oceans or snow, in particular over Antarctica. We introduce the reflection index that characterizes the relative intensity of the reflected ray with respect to the direct ray. The index allows for the automatic identification of events with reflections. We use the radio holographic estimate of the errors of the retrieved bending angle profiles of reflected rays. A comparison of indices evaluated for a large base of events including the visual identification of reflections indicated a good agreement with our definition of reflection index.
机译:波场的线性和非线性表示构成了用于分析无线电源(RO)数据的现代算法的基础。线性表示由傅立叶积分运算符实现,其允许高分辨率检索弯曲角​​度。非线性表示包括Wigner分布函数(WDF),其等于光线空间中的能量伪密度。表示允许通过抑制射线空间的某个区域并将字段从变换空间映射到初始校展字段来筛选波场。我们将这种技术应用于来自RO观察的反射光线的检索。反射光线的使用可以增加大气折射率的检索的准确性。可以通过WDF或谱图地块的目视检查来识别反射光线。来自宇宙数据的许多例子表明,在海洋或雪地上大多观察到反射,特别是在南极洲。我们介绍了表征反射光线相对于直接光线的相对强度的反射指标。该索引允许使用反射自动识别事件。我们使用反射光线的检索弯曲角​​度分布的误差的无线电全息估计。对包括视觉识别的大型事件评估的指数的比较表明了与我们对反射指数的定义有关的良好一致性。

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