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A Fast Algorithm for Retrieving Maps of Atmospheric Pollution by Fine Particulate Matter from Multispectral Satellite Images

机译:一种快速算法,用于通过多光谱卫星图像测量大气污染地图

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摘要

Abstract A new algorithm for retrieving the total content of atmospheric fine particulate matter (FPM) (particles with a size of less than 1.0 and 2.5 μm) from multispectral satellite images in visible and IR regions of the electromagnetic spectrum is described. The algorithm is based on the regression relations between the top of atmosphere (TOA) reflectance, microphysical parameters of aerosol, and geometrical parameters of the satellite scene. The regression equations are built based on the calculated TOA brightness in the spectral channels of the satellite instrument for the ensemble of randomly generated parameters of the atmospheric radiative transfer model and geometrical parameters of the satellite scenes. Subsequently, this allows real-time mapping of the atmospheric FPM pollution directly from the satellite images without solving ill-posed inverse problems based on the solar radiation transfer in the atmosphere and aerosol light scattering. The algorithm suggested is implemented and tested for the MERIS (Medium Resolution Imaging Spectrometer) satellite instrument. Comparison of the MERIS-retrieved total content of the atmospheric FPM with AERONET (Aerosol Robotic Network) data shows a standard deviation of ~0.5 μg/cm_(2). The applicability of the algorithm developed to real-time monitoring of the regional and transboundary transport of the atmospheric FPM pollutants during wildfires is demonstrated.
机译:摘要描述了一种新的算法,用于检测来自电磁谱的可见和IR区域中的多光谱卫星图像的大气细颗粒物质(FPM)(尺寸小于1.0和2.5μm)的总含量。该算法基于大气层(TOA)反射率的回归关系,气溶胶的微手术参数以及卫星场景的几何参数。回归方程基于卫星仪器的频谱通道中的计算出的TOA亮度构建,用于集合大气辐射传输模型的随机产生的参数和卫星场景的几何参数的集合。随后,这允许基于大气中的太阳辐射传递和气溶胶光散射的太阳辐射转移来直接从卫星图像实时映射大气FPM污染。建议的算法用于MERIS(中分辨率成像光谱仪)卫星仪器进行了实现和测试。 MERIS-REVERATECTEATION与AEROONET(气溶胶机器人网络)数据的单位检索总含量的比较显示了〜0.5μg/ cm_(2)的标准偏差。展示了对野火期间大气FPM污染物的区域和越境运输的实时监测算法的适用性。

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