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Mapping alteration mineral zones and lithological units in Antarctic regions using spectral bands of ASTER remote sensing data

机译:使用ASTER遥感数据的光谱带映射改变矿物区和南极地区的岩性单位

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摘要

Geological mapping is one of the primary tasks of remote sensing. Remote sensing applications are especially useful when extreme environmental conditions inhibit direct survey such as in Antarctica. In this investigation, a satellite-based remote sensing approach was used for mapping alteration mineral zones and lithological units using Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) data in the Oscar II coast area, north-eastern Graham Land, Antarctic Peninsula. Specialized band ratios and band combinations were developed using visible and near infrared, shortwave infrared (SWIR) and thermal infrared spectral bands of ASTER for detecting alteration mineral assemblages and lithological units in Antarctic environments. Constrained Energy Minimization, Orthogonal Subspace Projection and Adaptive Coherence Estimator algorithms were tested to ASTER SWIR bands for detecting sub-pixels' abundance of spectral features related to muscovite, kaolinite, illite, montmorillonite, epidote, chlorite and biotite. Results indicate valuable applicability of ASTER data for Antarctic geological mapping.
机译:地质映射是遥感的主要任务之一。当极端环境条件抑制如南极洲的直接调查时,遥感应用特别有用。在这次调查中,一种基于卫星的遥感方法用于使用奥斯卡II海岸地区,东北地区,南极半岛的高级星海岸地区映射改变矿泉区和岩性单元。使用可见和近红外,短波红外(SWIR)和紫红色的空转频谱和热红外光谱带和抗抗振频带和热红外光谱带进行专业的带比和频带组合,用于检测南极环境中的改变矿物组合和岩性单元。受约束的能量最小化,正交子空间投影和自适应相干估计器算法被测试到抗峰血管带,用于检测与Moscovite,高岭土,伊尔石,蒙脱石,鳗鱼,氯酸盐和生物烟灰有关的子像素的谱特征的谱特征的丰富。结果表明ASTER数据对南极地质映射的宝贵适用性。

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