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Update of Infrared Atmospheric Sounding Interferometer (IASI) channel selection with correlated observation errors for numerical weather prediction (NWP)

机译:具有相关观测误差的红外大气探测干涉仪(IASI)频道选择,用于数值天气预报(NWP)

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The Infrared Atmospheric Sounding Interferometer (IASI) is an essential instrument for numerical weather prediction (NWP). It measures radiances at the top of the atmosphere using 8461 channels. The huge amount of observations provided by IASI has led the community to develop techniques to reduce observations while conserving as much information as possible. Thus, a selection of the 300 most informative channels was made for NWP based on the concept of information theory. One of the main limitations of this method was to neglect the covariances between the observation errors of the different channels. However, many centres have shown a significant benefit for weather forecasting to use them. Currently, the observation-error covariances are only estimated on the current IASI channel selection, but no studies to make a new selection of IASI channels taking into account the observation-error covariances have yet been carried out. The objective of this paper was therefore to perform a new selection of IASI channels by taking into account the observation-error covariances. The results show that with an equivalent number of channels, accounting for the observation-error covariances, a new selection of IASI channels can reduce the analysis error on average in temperature by 3%, humidity by 1.8% and ozone by 0.9% compared to the current selection. Finally, we go one step further by proposing a robust new selection of 400 IASI channels to further reduce the analysis error for NWP.
机译:红外大气探测干涉仪(IASI)是用于数值天气预报(NWP)的重要仪器。使用8461频道,它测量了大气层顶部的辐射。 IASI提供的大量观察导致社区开发了减少观察的技术,同时尽可能多地保存更多信息。因此,基于信息理论的概念,为NWP选择了300个大多数信息频道的选择。这种方法的主要局限之一是忽略不同渠道的观察误差之间的协方差。然而,许多中心对使用它们的天气预报显示了显着的好处。目前,只估计了目前的IASI渠道选择,但没有研究以考虑到观察错误考虑的新选择IASI渠道的研究。因此,本文的目的是通过考虑到观察误差协方差来执行新的IASI渠道选择。结果表明,通过相当数量的渠道,占观察误差协方差的渠道,新的IASI通道的选择可以平均将分析误差平均为3%,湿度为1.8%,臭氧与0.9%相比当前选择。最后,我们通过提出一个强大的新选择的400个IASI通道的新选择来进一步逐步,以进一步降低NWP的分析误差。

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