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Analysis of reflections in GNSS radio occultation measurements using the phase matching amplitude

机译:使用相位匹配幅度的GNSS无线电掩星测量反射分析

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摘要

It is well-known that in the presence of super-refractive layers in the lower-tropospheric inversion of GNSS radio occultation (RO) measurements using the Abel transform yields biased refractivity profiles. As such it is problematic to reconstruct the true refractivity from the RO signal. Additional information about this lower region of the atmosphere might be embedded in reflected parts of the signal. To retrieve the bending angle, the phase matching operator can be used. This operator produces a complex function of the impact parameter, and from its phase we can calculate the bending angle. Instead of looking at the phase, in this paper we focus on the function's amplitude. The results in this paper show that the signatures of surface reflections in GNSS RO measurements can be significantly enhanced when using the phase matching method by processing only an appropriately selected segment of the received signal. This signature enhancement is demonstrated by simulations and confirmed with 10 hand-picked MetOp-A occultations with reflected components. To validate that these events show signs of reflections, radio holographic images are generated. Our results suggest that the phase matching amplitude carries information that can improve the interpretation of radio occultation measurements in the lower troposphere.
机译:众所周知,在GNSS无线电掩星(RO)测量的低层逆转层的存在下,使用ABEL变换产生偏置折射率曲线。因此,重建来自RO信号的真实折射率是有问题的。有关该气氛的下部区域的附加信息可能嵌入在信号的反射部分中。为了检索弯曲角​​度,可以使用相位匹配的操作员。该操作员产生影响参数的复杂功能,并且从其相位可以计算弯曲角度。在本文中,而不是查看该阶段,我们专注于功能的幅度。 The results in this paper show that the signatures of surface reflections in GNSS RO measurements can be significantly enhanced when using the phase matching method by processing only an appropriately selected segment of the received signal.通过模拟证明了这种签名增强,并用10个手动挑选的媒体进行了确认,具有反射组件。为了验证这些事件显示反射迹象,生成无线电全息图像。我们的研究结果表明,相位匹配幅度携带信息,可以提高对流层较低的对流层中的无线电掩星测量的解释。

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