首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >An Abel transform for deriving line-of-sight wind profiles from LEO-LEO infrared laser occultation measurements
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An Abel transform for deriving line-of-sight wind profiles from LEO-LEO infrared laser occultation measurements

机译:通过Abel变换从LEO-LEO红外激光掩星测量得出视线风廓线

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摘要

We have developed a formula for the retrieval of the line-of-sight (l.o.s.) wind speed from future low Earth orbit (LEO) satellite-to-satellite infrared laser occultation measurements. The formula involves an Abelian integral transform akin to the Abel transform widely used for deriving refractive index from bending angle in Global Navigation Satellite System radio occultation measurements. Besides the Abelian integral transform, the formula is derived from a truncated series expansion of the volume absorption coefficient as a function of frequency and includes a simple absorption-line-asymmetry correction term. A first-order formulation (referred to as the standard formula) is complemented by higher-order terms that can be used for high-accuracy computations. Under the assumptions of spherical symmetry and perfect knowledge of spectroscopy, the residual l.o.s. wind error from using the standard formula rather than the high-accuracy formula is assessed to be small compared to that anticipated from measurement errors in a real experiment. Applying the new formula just in standard form to future infrared laser transmission profiles would therefore enable the retrieval of l.o.s. stratospheric wind profiles with an accuracy limited mainly by measurement errors, residual spectroscopic errors, and deviations from spherical symmetry.
机译:我们已经开发出了一种公式,用于从未来的低地球轨道(LEO)卫星到卫星红外激光掩星测量中检索视线(l.o.s.)风速。该公式涉及类似于Abel积分变换的Abelian积分变换,广泛用于从全球导航卫星系统无线电掩星测量中的弯曲角度得出折射率。除了Abelian积分变换外,该公式还来自体积吸收系数随频率变化的截断级数展开,并且包括一个简单的吸收线不对称校正项。一阶公式(称为标准公式)由可用于高精度计算的高阶术语补充。在球对称性和光谱学知识完美的假设下,残留的l.o.s.与使用标准公式而不是高精度公式得出的风误差相比,在实际实验中得出的风误差估计较小。因此,仅以标准形式将新公式应用于未来的红外激光透射曲线,就可以检索l.o.s。平流层风廓线的精度主要受测量误差,残余光谱误差和与球对称性偏差的限制。

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