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Advances in simultaneous atmospheric profile and cloud parameter regression based retrieval from high-spectral resolution radiance measurements

机译:从高光谱分辨率辐射测量中同时获取大气剖面和云参数回归的进展

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摘要

The dual-regression (DR) method retrieves information about the Earth surface and vertical atmospheric conditions from measurements made by any high-spectral resolution infrared sounder in space. The retrieved information includes temperature and atmospheric gases (such as water vapor, ozone, and carbon species) as well as surface and cloud top parameters. The algorithm was designed to produce a high-quality product with low latency and has been demonstrated to yield accurate results in real-time environments. The speed of the retrieval is achieved through linear regression, while accuracy is achieved through a series of classification schemes and decision-making steps. These steps are necessary to account for the nonlinearity of hyperspectral retrievals. In this work, we detail the key steps that have been developed in the DR method to advance accuracy in the retrieval of nonlinear parameters, specifically cloud top pressure. The steps and their impact on retrieval results are discussed in-depth and illustrated through relevant case studies. In addition to discussing and demonstrating advances made in addressing nonlinearity in a linear geophysical retrieval method, advances toward multi-instrument geophysical analysis by applying the DR to three different operational sounders in polar orbit are also noted. For any area on the globe, the DR method achieves consistent accuracy and precision, making it potentially very valuable to both the meteorological and environmental user communities. Key Points Dual-regression provides reliable parameters from high-spectral radiances. Works with any polar-orbiting sounder (AIRS,IASI or CrIS). Retrieved cloud heights compare very well with cloud heights from CALIOP.
机译:双重回归(DR)方法从太空中任何高光谱分辨率的红外测深仪进行的测量中获取有关地球表面和垂直大气状况的信息。检索到的信息包括温度和大气气体(例如水蒸气,臭氧和碳物质)以及地表和云顶参数。该算法旨在生产低延迟的高质量产品,并已被证明可在实时环境中产生准确的结果。检索速度是通过线性回归实现的,而准确性是通过一系列分类方案和决策步骤实现的。这些步骤对于解决高光谱检索的非线性是必要的。在这项工作中,我们详细介绍了DR方法中开发的关键步骤,以提高非线性参数(尤其是云顶压力)的检索精度。这些步骤及其对检索结果的影响将进行深入讨论,并通过相关案例研究进行说明。除了讨论和演示线性地球物理检索方法在解决非线性方面取得的进展外,还指出了通过将DR应用于极地轨道上的三种不同的测深仪,向多仪器地球物理分析的进展。在全球任何地区,DR方法都可以达到一致的精度和精确度,这使其对气象和环境用户社区都非常有价值。关键点双回归提供了高光谱辐射的可靠参数。可与任何极轨探测仪(AIRS,IASI或CrIS)配合使用。检索到的云层高度与CALIOP的云层高度相比非常好。

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