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A Hyperspectral Thermal Infrared Imaging Instrument for Natural Resources Applications

机译:用于自然资源应用的高光谱热红外成像仪

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A new instrument has been setup at the Centre de Recherche Public-Gabriel Lippmann to measure spectral emissivity values of typical earth surface samples in the 8 to 12 μm range at a spectral resolution of up to 0.25 cm−1. The instrument is based on a Hyper-Cam-LW built by Telops with a modified fore-optic for vertical measurements at ground level and a platform for airborne acquisitions. A processing chain has been developed to convert calibrated radiances into emissivity spectra. Repeat measurements taken on samples of sandstone show a high repeatability of the system with a wavelength dependent standard deviation of less than 0.01 (1.25% of the mean emissivity). Evaluation of retrieved emissivity spectra indicates good agreement with reference measurements. The new instrument facilitates the assessment of the spatial variability of emissivity spectra of material surfaces—at present still largely unknown—at various scales from ground and airborne platforms and thus will provide new opportunities in environmental remote sensing.
机译:在Recherche Public-Gabriel Lippmann中心安装了一种新仪器,可以测量典型地球表面样品在8至12μm范围内的光谱发射率值,光谱分辨率高达0.25 cm -1 。该仪器基于由Telops制造的Hyper-Cam-LW,具有改进的前光学镜,可在地面进行垂直测量,并具有机载采集平台。已开发出一条处理链,可将校准后的辐射率转换为发射率光谱。对砂岩样品进行的重复测量表明,该系统具有很高的可重复性,其波长相关的标准偏差小于0.01(平均发射率的1.25%)。对检索到的发射率光谱的评估表明与参考测量值吻合良好。新仪器有助于评估地面和机载平台各种尺度的材料表面发射光谱的空间变异性(目前仍未知),因此将为环境遥感提供新的机会。

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