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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >First use of an airborne thermal infrared hyperspectral scanner for compositional mapping
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First use of an airborne thermal infrared hyperspectral scanner for compositional mapping

机译:首次使用机载热红外高光谱扫描仪进行成分映射

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In May 1999, the airborne thermal infrared hyperspectral imaging system, Spatially Enhanced Broadband Array Spectrograph System (SFBASS), was flown over Mormon Mesa, NV to provide the first test of such a system for geological mapping. Several types of carbonate deposits were identified using the 11.25-μm band. However, massive calcrete outcrops exhibited weak spectral contrast, which was confirmed by field and laboratory measurements. Because the weathered calcrete surface appeared relatively smooth in hand specimen, this weak spectral contrast was unexpected. Here we show that microscopic roughness not readily apparent to the eye has introduced both a cavity effect and volume scattering to reduce spectral contrast. The macroroughness of crevices and cobbles may also have a significant cavity effect. The diminished spectral contrast is important because it places higher signal-to-noise ratio (SNR) requirements for spectroscopic detection and identification. This effect should be factored into instrumentation planning and interpretations, especially interpretations without benefit of ground truth. SEBASS had the required high SNR and spectral resolution to allow us to demonstrate for the first time the ability of an airborne hyperspectral thermal infrared scanner to detect and identify spectrally subtle materials.
机译:1999年5月,机载热红外高光谱成像系统,即空间增强宽带阵列光谱仪系统(SFBASS),飞越内华达州的摩门哥萨(Mormon Mesa),提供了该系统用于地质测绘的首次测试。使用11.25-μm谱带可以​​识别出几种类型的碳酸盐矿床。然而,大量的混凝土露头显示出较弱的光谱对比,这已通过现场和实验室测量得到证实。由于风化的混凝土表面在手持标本中显得相对光滑,因此这种弱的光谱对比是出乎意料的。在这里,我们显示出肉眼不易察觉的微观粗糙度已经引入了腔效应和体积散射,从而降低了光谱对比度。缝隙和卵石的宏观粗糙度也可能会产生明显的空腔效应。降低的光谱对比度很重要,因为它对光谱检测和识别提出了更高的信噪比(SNR)要求。这种影响应考虑到仪器的计划和解释中,尤其是没有地面真理的解释中。 SEBASS具有所需的高SNR和光谱分辨率,使我们能够首次展示机载高光谱热红外扫描仪检测和识别光谱细微物质的能力。

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