贾坎德邦Latehar & Gumla地区部分地区空间变化的Hyperion数据光谱分析

R. Satpathy, V. Singh, R. Parveen, A. T. Jeyaseelan
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引用次数: 5

摘要

近红外和短波红外的反射和发射光谱为确定岩石和土壤样品的矿物学提供了一种快速、廉价、非破坏性的工具。高光谱遥感具有提供地球表面详细的物理化学(矿物学、化学、形态学)的潜力。与老一代的低光谱分辨率系统相比,这些信息对于绘制潜在的寄主岩石、蚀变组合和矿物特征非常有用。在本研究EO-1中,hyperion数据被用于描述AL+OH矿物。从Hyperion图像中提取铝土矿的要求是首先使用交叉轨迹照明校正和对数残差校准模型补偿大气效应。采用MNF变换降低数据噪声,提取极值像素。本研究使用目标矿物的一些纯像素端元和背景来解释光谱角映射和匹配滤波,并通过现场研究验证了结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectral Analysis of Hyperion Data for Mapping the Spatial Variation of in a Part of Latehar & Gumla District, Jharkhand
Reflectance and emittance spectroscopy in the near-infra red and short-wave infra red offers a rapid, Inexpensive, non-destructive tool for determining the mineralogy of rock and soil samples. Hyperspectral remote sensing has the potential to provide the detailed physico-chemistry (mineralogy, chemistry, morphology) of the earth’s surface. This information is useful for mapping potential host rocks, alteration assemblages and mineral characteristics, in contrast to the older generation of low spectral resolution systems. In the present study EO-1, hyperion data has been used for the delineation of AL+OH minerals. The requirements for extracting bauxites from Hyperion images is to first compensate for atmospheric effects using cross track illumination correction & the log residual calibration model. MNF transformation was applied to reduce the data noise and for extracting the extreme pixels. Some pure pixel end member for the target mineral and the backgrounds were used in this study to account for the spectral angle mapping & matched filtering and the results were validated with the respect of field study.
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