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Vicarious calibration of the Moderate-Resolution Imaging Spectroradiometer Airborne Simulator thermal-infrared channels

机译:中等分辨率成像光谱仪机载模拟器热红外通道的替代校准

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摘要

We made an experimental vicarious calibration of the Moderate Resolution Imaging Spectroradiometer (MODIS) Airborne Simulator (MAS) thermal infrared (TLR) channel data acquired in the field campaign near Mono Lake, Calif. on 10 March 1998 to demonstrate the advantage of using high-elevation sites in dry atmospheric conditions for vicarious calibration. With three lake-surface sites and one snow-field site, we estimated the MAS noise-equivalent temperature difference as 0.7-1.0℃ for bands 30-32 in the 3.68-4.13-μm region and 0.1-0.5℃ for bands 42, 45, 46, and 48 in the 8-13.5-μm region. This study Shows that the MAS calibration error is within ±0.4℃ in the split-window channels (at 11 and 12 μm) and larger in other TlR channels based on the MAS data over Mono Lake and in situ measurement data over the snow-field site.
机译:我们对1998年3月10日在加利福尼亚州莫诺湖附近进行的野战中获得的中分辨率成像光谱仪(MODIS)机载模拟器(MAS)热红外(TLR)通道数据进行了实验性校准,以证明使用高光谱成像仪的优势高海拔地区在干燥的大气条件下进行替代校准。在三个湖面站点和一个雪场站点的情况下,我们估计3.68-4.13μm区域中30-32波段的MAS噪声当量温差为0.7-1.0℃,而42、45波段中的MAS噪声等效温差为0.1-0.5℃。 ,46和48位于8-13.5-μm区域。这项研究表明,基于Mono Lake的MAS数据和雪场的原位测量数据,分窗窗口(11和12μm)的MAS校准误差在±0.4℃以内,其他TlR通道的MAS校准误差则更大现场。

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