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Multiscale hierarchical domaining and compression of drill hole data

机译:钻孔数据的多尺度分层域划分和压缩

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New drilling methods, currently under development for minerals exploration, combined with rapid data collection by a range of sensors means that the end-user is confronted with increasingly large data sets. In order to reduce the stream of data into objects which represent meaningful geological features we need to incorporate spatial information into the analysis. Boundary detection incorporating multiscale considerations has previously been carried out using a scale-space plot from a wavelet transform. We present a method which applies a rectangular tessellation to the wavelet transform, this has the advantage of being easier to interpret, as it resembles a geological log. In addition, the tessellation records hierarchical information for different scale objects. The tessellation can be filtered in order to remove unwanted variation (including noise) from the results. When applied to geochemical data, the resulting tessellation provides a basis for classification of lithochemical units that is more reliable than classification by considering individual samples without spatial context. (C) 2015 Elsevier Ltd. All rights reserved.
机译:目前正在开发用于矿物勘探的新钻探方法,再加上一系列传感器的快速数据收集,意味着最终用户将面临越来越大的数据集。为了减少进入代表有意义地质特征的对象的数据流,我们需要将空间信息纳入分析中。先前已经使用来自小波变换的比例尺空间图进行了结合多尺度考虑因素的边界检测。我们提出了一种将矩形细分应用于小波变换的方法,该方法具有易于解释的优势,因为它类似于地质测井。此外,镶嵌还记录了不同比例对象的层次信息。可以对镶嵌细分进行过滤,以便从结果中消除不必要的变化(包括噪声)。当应用于地球化学数据时,所得的细分可为岩石化学单元的分类提供基础,该分类比考虑没有空间上下文的单个样本的分类更为可靠。 (C)2015 Elsevier Ltd.保留所有权利。

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