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New entropy-based method for variables selection and its application to the debris-flow hazard assessment

机译:基于熵的变量选择新方法及其在泥石流灾害评估中的应用

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摘要

We propose a new data analyzing scheme, the method of minimum entropy analysis (MEA). New MEA method provides a quantitative criterion for selecting relevant variables to model the studied physical system. This method can be easily extended to the analyses of various geophysical/geological data, where many relevant or irrelevant available measurements may obscure the understanding of the highly complicated physical system like the occurrence of debris-flows. After demonstrating and testing the MEA method, we apply this method to a dataset of debris-flow occurrences in Taiwan and successfully identify three relevant variables, i.e. the hydrological form factor, landslide area, and number of landslides, to the occurrence of observed debris-flow events by the 1996 Typhoon Herb.
机译:我们提出了一种新的数据分析方案,即最小熵分析(MEA)方法。新的MEA方法为选择相关变量建模研究的物理系统提供了定量标准。这种方法可以轻松地扩展到各种地球物理/地质数据的分析,其中许多相关或不相关的可用测量值可能会使对高度复杂的物理系统(如泥石流的发生)的理解难以理解。在演示并测试了MEA方法后,我们将该方法应用于台湾泥石流发生的数据集,并成功地确定了三个相关变量,即水文形状因子,滑坡面积和滑坡数量,以观察到的碎屑-由1996年台风“香草”引发的水流事件。

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