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Inversion for atmospheric thermodynamical parameters of IASI data in the principal components space

机译:主成分空间中IASI数据的大气热力学参数反演

摘要

The problem of reducing the dimensionality of infrared atmospheric sounding interferometer (IASI) data space through a suitable transform and performing the retrieval process for thermodynamical parameters within the transformed data space is addressed in this paper. The reduction of dimensionality is performed with the principal components transform, which allows us to represent the full IASI spectrum with a few coefficients of the expansion. This truncated expansion could have a twofold beneficial effect: (i) it could improve the present exploitation and performance of IASI data for the retrieval of temperature and moisture; and (ii) it could save transmission bandwidth, data rate and costs for the dissemination to users of IASI data. A suitable form of the inverse/forward model completely embedded in the transformed space has been derived and applied to simulated and real IASI data. This methodology has allowed us to assess the IASI performance for temperature, water vapor and ozone based on the full IASI spectral coverage. The use of back-transformed spectral radiances (i.e. the filtered radiances obtained by the truncated expansion) instead of expansion coefficients has also been addressed and assessed. Retrieval exercises performed in simulation and with real observations lead us to conclude that the principal components space-based inverse approach is potentially superior over the current practice of using sparse channels. Copyright © 2011 Royal Meteorological Society
机译:本文提出了通过适当的变换来减小红外大气探测仪(IASI)数据空间的维数,并在变换后的数据空间内执行热力学参数的检索过程的问题。用主成分变换执行降维,这使我们可以用几个扩展系数来表示完整的IASI频谱。这种截断的扩展可能具有双重有益效果:(i)可以改善IASI数据的当前开发和性能,以获取温度和湿度。 (ii)可以节省传输带宽,数据速率和向IASI数据用户传播的成本。完全嵌入转换空间中的逆向/正向模型的合适形式已被导出,并应用于模拟和真实IASI数据。这种方法使我们能够基于完整的IASI频谱范围评估IASI在温度,水蒸气和臭氧方面的性能。还已经解决和评估了使用反变换的光谱辐射率(即通过截短的扩展获得的滤波辐射)代替扩展系数的方法。在模拟中进行的取回练习和实际观察结果使我们得出结论,基于主成分的空间逆方法可能比当前使用稀疏通道的方法更好。版权所有©2011皇家气象学会

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