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Comparison of Airborne and Satellite Hyperspectral Data for Geologic Mapping

机译:地质映射空气传播和卫星高光谱数据的比较

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Airborne hyperspectral data have been available to researchers since the early 1980s and their use for geologic applications is well established. The launch of NASA's EO-1 Hyperion sensor in November 2000 marked the establishment of a test bed for spaceborne hyperspectral capabilities. Hyperion covers the 0.4 to 2.5 μm range with 242 spectral bands at approximately 10nm spectral resolution and 30m spatial resolution. Analytical Imaging and Geophysics (AIG) and CSIRO have been involved in efforts to evaluate, validate, and demonstrate Hyperions's utility for geologic mapping in a variety of sites in the USA and around the world. Initial results over a site at Cuprite, Nevada, with established ground truth and years of airborne hyperspectral data show that Hyperion data from the SWIR spectrometer can be used to produce useful geologic (mineralogic) information. Minerals mapped at Cuprite include kaolinite, alunite, buddingtonite, calcite, muscovite, and hydrothermal silica. Hyperion data collected at other sites under optimum conditions (summer season, bright targets) indicate that Hyperion data meet pre-launch specifications and allow subtle distinctions such as determining the difference between calcite and dolomite and mapping solid solution differences in micas caused by substitution in octahedral molecular sites. Comparison of airborne hyperspectral data (AVIRIS) to the Hyperion data establishes that Hyperion provides similar information content, with the principal limitations being reduced spatial distinctions caused by the 30m spatial resolution and limited mapping of fine spectral detail based on lower signal-to-noise ratios.
机译:自1980年代初机载高光谱数据已经提供给研究人员和他们的地质应用是公认的。 2000年11月推出美国宇航局EO-1海波传感器的标星载高光谱能力建立一个试验台。海波覆盖在大约10nm的光谱分辨率和30米空间分辨率的0.4至2.5μm范围内具有242个光谱带。分析成像与地球物理(AIG)和CSIRO已经参与努力评估,验证和展示了各种在美国和世界各地的网站Hyperions对地质映射工具。在过赤铜矿,内华达州的一个现场初步结果,既定的地面实况和多年航空高光谱数据显示,从短波红外光谱仪海波数据可以用来产生有用的地质(矿物学)的信息。在赤铜矿映射矿物包括高岭石,明矾石,buddingtonite,方解石,白云母,和水热二氧化硅。在最佳条件下的其他网站(夏季,明亮的目标)收集海波数据表明,海波数据满足预启动规格和允许细微差别,例如确定方解石和白云石和映射引起取代在八面体云母固溶体差之间的差分子网站。航空高光谱数据(AVIRIS)到海波数据规定,海波提供类似的信息的内容,与主要局限性的比较是减小由30米空间分辨率的空间区别和基于较低的信号噪声比的限制精细频谱细节的映射。

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