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AIRS/AMSU/HSB validation

机译:种族/泪水/丈夫验证

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摘要

The Atmospheric Infrared Sounder/Advanced Microwave Sounding Unit/Humidity Sounder for Brazil (AIRS/AMSU/HSB) instrument suite onboard Aqua observes infrared and microwave radiances twice daily over most of the planet. AIRS offers unprecedented radiometric accuracy and signal to noise throughout the thermal infrared. Observations from the combined suite of AIRS, AMSU, and HSB are processed into retrievals of atmospheric parameters such as temperature, water vapor, and trace gases under all but the cloudiest conditions. A more limited retrieval set based on the microwave radiances is obtained under heavy cloud cover. Before measurements and retrievals from AIRS/AMSU/HSB instruments can be fully utilized they must be compared with the best possible in situ and other ancillary "truth" observations. Validation is the process of estimating the measurement and retrieval uncertainties through comparison with a set of correlative data of known uncertainties. The ultimate goal of the validation effort is retrieved product uncertainties constrained to those of radiosondes: tropospheric rms uncertainties of 1.0 degC over a 1-km layer for temperature, and 10% over 2-km layers for water vapor. This paper describes the data sources and approaches to be used for validation of the AIRS/AMSU/HSB instrument suite, including validation of the forward models necessary for calculating observed radiances, validation of the observed radiances themselves, and validation of products retrieved from the observed radiances. Constraint of the AIRS product uncertainties to within the claimed specification of 1 K/1 km over well-instrumented regions is feasible within 12 months of launch, but global validation of all AIRS/AMSU/HSB products may require considerably more time due to the novelty and complexity of this dataset and the sparsity of some types of correlative observations.
机译:Aqua机载的巴西大气压红外测深仪/高级微波测深仪/湿度测量仪(AIRS / AMSU / HSB)每天在整个地球上两次观测红外和微波辐射。 AIRS提供了前所未有的辐射精确度和整个红外热范围内的信噪比。从AIRS,AMSU和HSB的组合套件中获得的观测值将被处理成除最多云的条件下所有大气参数的检索,例如温度,水蒸气和微量气体。在厚厚的云层覆盖下,获得了基于微波辐射的更有限的检索集。在充分利用AIRS / AMSU / HSB仪器进行测量和检索之前,必须将其与最佳的原位和其他辅助“真相”观测结果进行比较。验证是通过与一组已知不确定性的相关数据进行比较来估计测量和检索不确定性的过程。验证工作的最终目标是获得与无线电探空仪有关的产品不确定度:对流层均方根不确定度在温度1公里的范围内为1.0摄氏度,在水蒸气2公里的范围内为10%。本文介绍了用于验证AIRS / AMSU / HSB仪器套件的数据源和方法,包括验证计算观测辐射所需的正向模型,验证观测辐射本身,以及验证从观测中获取的产品的有效性。光辉。将AIRS产品的不确定性限制在良好仪器区域内要求的1 K / 1 km范围之内是可行的,但由于新颖性,所有AIRS / AMSU / HSB产品的全球验证可能需要更多时间数据集的复杂性以及某些类型的相关观测值的稀疏性。

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