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Simultaneous retrieval of aerosol and surface optical properties using data of the Multi-angle Imaging SpectroRadiometer (MISR)

机译:使用多角度成像光谱辐射仪(MISR)的数据同时检索气溶胶和表面光学特性

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An algorithm for retrieving simultaneously aerosol and surface optical properties from radiance data of the Multi-angle Imaging SpectroRadiometer (MISR) was developed. It uses MISR subregion radiance data of the 9 cameras and 4 spectral bands (spatial resolution 1. 1 km) to generate characteristic functions rho(surf)=f(lambda,cam) (beta(e) (550 nm)), where beta(e) (550 nm) and rho(surf) are the ground level aerosol extinction coefficient at 550 nm, and the surface reflectance, respectively. The analysis of the mutual intersections of those functions yield optimum values for P, (550 nm), aerosol optical depth (AOD) at 550 nm and p(surf). MODTRAN 4 v3r1 was used to create radiance look-up tables. The algorithm was tested for MISR paths covering the complex terrain of Switzerland and northern Italy. Results of 2 days (low and high aerosol loads on May 14 and June 17, 2002, respectively) were analyzed and compared with sun photometer measurements. First, ground level aerosol extinction coefficients and optical depth over water were derived. From those data it was possible to retrieve a best-fit aerosol mixture. AOD (550 nm) over water is in satisfactory agreement with both sun photometer data and the operational aerosol product of MISR. Second, the Ross-Li approach for the bidirectional reflectance factor (BRF), supported by MODTRAN 4, was applied to simulate the radiance over vegetation surfaces. In this case, the retrieved aerosol extinction coefficients and optical depths over vegetation are significantly lower than the values derived over water. We assume that the incomplete coupling of BRF and radiation in MODTRAN 4 is at least partly responsible for this discrepancy. (c) 2006 Elsevier Inc. All rights reserved.
机译:开发了一种同时从多角度成像光谱辐射仪(MISR)的辐射数据中检索气溶胶和表面光学特性的算法。它使用9个相机的MISR子区域辐射数据和4个光谱带(空间分辨率1. 1 km)来生成特征函数rho(surf)= f(lambda,cam)(beta(e)(550 nm)),其中beta (e)(550 nm)和rho(surf)分别是550 nm处的地面气溶胶消光系数和表面反射率。这些函数的相互交点的分析得出P(550 nm),550 nm的气溶胶光学深度(AOD)和p(surf)的最佳值。 MODTRAN 4 v3r1用于创建辐射查找表。该算法已针对覆盖瑞士和意大利北部复杂地形的MISR路径进行了测试。分析了两天的结果(分别在2002年5月14日和2002年6月17日的低和高气溶胶负荷),并将其与太阳光度计的测量结果进行了比较。首先,推导了地面气溶胶的消光系数和在水面上的光学深度。从这些数据中可以检索出最适合的气溶胶混合物。水面上的AOD(550 nm)与太阳光度计数据和MISR的可操作气溶胶产品均令人满意。其次,使用由MODTRAN 4支持的双向反射因子(BRF)的Ross-Li方法来模拟植被表面的辐射。在这种情况下,在植被上获得的气溶胶消光系数和光学深度明显低于在水上得出的值。我们假设MODTRAN 4中BRF和辐射的不完全耦合至少部分是造成这种差异的原因。 (c)2006 Elsevier Inc.保留所有权利。

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