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Extraction of Altered Mineral from Remote Sensing Data in Gold Exploration Based on the Nonlinear Analysis Technology

机译:基于非线性分析技术的金矿勘探遥感数据中蚀变矿物的提取

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Researchers have found that the mixed pixels exist in complex geological conditions often lead to distortion of altered minerals' spectral curves, and the accuracy of altered mineral extract from remote sensing data was reduced. Fortunately, the nonlinear analysis is a feasible solution. In this paper, by analyzing the nonlinear characteristics of the geological anomalies, the Fractal Dimension Change Point Method (FDCPM) will be used to extract the altered minerals' threshold from multispectral image. The realization theory and access mechanism of the model are elaborated by an experiment with ASTER data in Xinjinchang and Laojinchang gold deposits. The results show that the findings produced by FDCPM are agreed with well with a mounting body of evidence from different perspectives. The extracting accuracy over 86% show that FDCPM is an effective extrating method for remote sensing alteration anomalies, and it could be used as an useful tool for mineral exploration in similar areas in Beishan mineralization belt in northwest China.
机译:研究人员发现,混合像素存在于复杂的地质条件下,通常会导致改变的矿物光谱曲线失真,从而降低了遥感数据中改变的矿物提取物的准确性。幸运的是,非线性分析是可行的解决方案。本文通过分析地质异常的非线性特征,采用分形维数变化点法(FDCPM)从多光谱图像中提取蚀变矿物的阈值。通过在新津场和老津场金矿床中的ASTER数据实验,阐述了该模型的实现理论和访问机制。结果表明,FDCPM的调查结果与来自不同角度的大量证据非常吻合。超过86%的提取精度表明,FDCPM是一种有效的遥感蚀变异常提取方法,可作为西北地区北山成矿带类似地区矿产勘探的有用工具。

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