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Nonlinear Analysis of Typical Hydrological Time Series Under the Viewpoint of Visibility Graph Methods and Its Two Modification Versions

机译:在可见性图方法的观点下,典型水文时间序列的非线性分析及其两个修改版本

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Using visibility graph, horizontal visibility graph, and limited penetrable visibility graph methods, which are all proposed recently to change from time series to network graph, the hydrological time series of Umpqua river are analyzed under the view of complex network. After the establishment of related complex networks of this typical hydrological time series, basic network characteristics, such as degree distribution, average path length, clustering coefficient, graph density, and so on are calculated. Furthermore, community analysis of the three types of related complex networks are carried out. The similarities and differences of the three methods for network analysis are proposed. Finally, basic norms for modeling hydrological time series are proposed with comparison of the merits and drawbacks of the three methods. Results indicate that, for real hydrological time series, the related visibility and limited penetrable visibility networks behave obviously small-world property, while horizontal visibility network has not. Three networks have obviously the degree of distribution characteristics of scale-free networks. Overall, horizontal visibility graph showing scale-free feature most obviously (heavy-tailed is not obvious), visibility graph, and limited penetrable visibility graph networks have obvious bending head (heavy-tailed feature is more obvious). Based on the fitting results of three degree distribution curves, it can be seen that the coefficient absolute value of horizontal visibility network is the largest, which shows the sequence is of high sensitivity. In addition, according to the community analysis results, the limited penetrable visibility graph method is best for classifying withered water period, visibility graph method's ability is worse, horizontal visibility graph method's ability is worst, while through horizontal visibility graph, one can find the local minimum of hydrological time series easily, which is also consistent with the result of degree distribution.
机译:使用可见性图形,水平可见性图和有限的可渗透可见性图表方法,这些方法都是从时间序列改变到网络图中,在复杂网络的视野下分析了UMPQUA河流的水文时间序列。建立相关复杂网络的典型水文时间序列后,计算基本网络特性,如度分布,平均路径长度,聚类系数,曲线密度等。此外,对三种类型的相关复杂网络进行社区分析。提出了三种网络分析方法的相似性和差异。最后,采用三种方法的优点和缺点进行了模拟水文时间序列的基本规范。结果表明,对于实际水文时间序列,相关的可见性和有限的可渗透可视网络表现出明显的小世界性质,而水平可见性网络则没有。三个网络具有明显的无尺寸网络的分布特性。总体而言,显示无垢特征的水平可见性图最明显(重尾不明显),可见性图形和有限的可渗透可见性图网络网络具有明显的弯曲头(重型功能更加明显)。基于三度分布曲线的拟合结果,可以看出水平可见性网络的系数绝对值是最大的,显示序列具有高灵敏度。此外,根据社区分析结果,有限的可渗透可见性图方法最适合分类枯萎的水分,可见性图方法的能力更差,水平可见性图方法的能力最差,而通过水平可见性图,可以找到本地易于水文时间序列,这也与度分布的结果一致。

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