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Radiometric characterization of IKONOS multispectral imagery

机译:IKONOS多光谱图像的辐射表征

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摘要

A radiometric characterization of Space Imaging's IKONOS 4-m multispectral imagery has been performed by a National Aeronautics and Space Administration (NASA) funded team from NASA Stennis Space Center, the University of Arizona Remote Sensing Group (U of A RSG), and South Dakota State University (SDSU). Both intrinsic radiometry and the effects of Space Imaging processing on radiometry were investigated. Relative radiometry was examined with uniform Antarctic and Saharan sites. Absolute radiometric calibration was performed using reflectance-based vicarious calibration methods on several uniform sites imaged by IKONOS coincident with ground-based surface and atmospheric measurements. Ground-based data and the IKONOS spectral response function served as input to radiative transfer codes to generate a top-of-atmosphere (TOA) radiance estimate. Calibration coefficients derived from each vicarious calibration were combined to generate an IKONOS radiometric gain coefficient for each multispectral band assuming a linear response over the full dynamic range of the instrument. These calibration coefficients were made available to Space Imaging, which subsequently adopted them by updating its initial set of calibration coefficients. IKONOS imagery procured through the NASA Scientific Data Purchase was processed with or without a Modulation Transfer Function Compensation (MTFC) kernel. The radiometric effects of this kernel on various scene types were also investigated.
机译:由美国国家航空航天局(NASA)资助,由NASA斯坦尼斯太空中心,亚利桑那大学遥感小组(U RSG)和南达科他州资助的团队对太空成像IKONOS 4-m多光谱图像进行了辐射表征。州立大学(SDSU)。研究了固有辐射法和空间成像处理对辐射法的影响。用统一的南极和撒哈拉沙漠地区进行了相对辐射测量。使用基于反射率的替代校准方法,对由IKONOS成像的几个均匀站点进行的绝对辐射定标,同时还要进行基于地面的地面和大气测量。地面数据和IKONOS光谱响应函数用作辐射传递代码的输入,以生成大气顶(TOA)辐射估算。假设在仪器的整个动态范围内都具有线性响应,则将从每次替代校准得出的校准系数组合起来,以为每个多光谱波段生成IKONOS辐射增益系数。这些校准系数已提供给Space Imaging,后者随后通过更新其初始校准系数集来采用它们。通过NASA科学数据购买获得的IKONOS图像在有或没有调制传递函数补偿(MTFC)内核的情况下都得到了处理。还研究了该内核对各种场景类型的辐射效应。

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