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Retrieval of cirrus cloud optical thickness and top altitude from geostationary remote sensing

机译:通过对地静止遥感反演卷云的光学厚度和最高海拔

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摘要

A novel approach for the detection of cirrus clouds and the retrieval of optical thickness and top altitude based on the measurements of the Spinning Enhanced Visible and Infrared Imager (SEVIRI) aboard the geostationary Meteosat Second Generation (MSG) satellite is presented. Trained with 8000000 co-incident measurements of the Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) aboard the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO) mission the new "cirrus optical properties derived from CALIOP and SEVIRI algorithm during day and night" (COCS) algorithm utilizes a backpropagation neural network to provide accurate measurements of cirrus optical depth tau at lambda = 532 nm and top altitude z every 15 min covering almost one-third of the Earth's atmosphere. The retrieved values are validated with independent measurements of CALIOP and the optical thickness derived by an airborne high spectral resolution lidar.
机译:提出了一种新的方法来检测卷云,并基于对地静止气象卫星第二代(MSG)上的自旋增强型可见光和红外成像仪(SEVIRI)的测量来检索光学厚度和最高高度。在“云-气溶胶激光雷达”和“红外探路者卫星观测”(CALIPSO)上接受了800万次与正交偏振(CALIOP)一起对云-气溶胶激光雷达的偶发测量,这套新的“卷云光学特性在白天和黑夜都源自CALIOP和SEVIRI算法”(COCS)算法利用反向传播神经网络提供了每15分钟λ= 532 nm和最高海拔z的卷云光学深度tau的准确测量,覆盖了几乎三分之一的地球大气层。取回的值通过对CALIOP的独立测量以及由机载高光谱分辨率激光雷达得出的光学厚度进行验证。

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