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嵌入高维中的分叉的早期预警信号。

Early warning signals for bifurcations embedded in high dimensions.

作者信息

Dylewsky Daniel, Anand Madhur, Bauch Chris T

机构信息

Department of Applied Mathematics, University of Waterloo, Waterloo, ON, N2L 3G1, Canada.

School of Environmental Sciences, University of Guelph, Guelph, ON, N1G 2W1, Canada.

出版信息

Sci Rep. 2024 Aug 6;14(1):18277. doi: 10.1038/s41598-024-68177-1.

Abstract

Recent work has highlighted the utility of methods for early warning signal detection in dynamic systems approaching critical tipping thresholds. Often these tipping points resemble local bifurcations, whose low dimensional dynamics can play out on a manifold embedded in a much higher dimensional state space. In many cases of practical relevance, the form of this embedding is poorly understood or entirely unknown. This paper explores how measurement of the critical phenomena that generically precede such bifurcations can be used to make inferences about some properties of their embeddings, and, conversely, how prior knowledge about the mechanism of bifurcation can robustify predictions of an oncoming tipping event. These modes of analysis are first demonstrated on a simple fluid flow system undergoing a Hopf bifurcation. The same approach is then applied to data associated with the West African monsoon shift, with results corroborated by existing models of the same system. This example highlights the effectiveness of the methodology even when applied to complex climate data, and demonstrates how a well-resolved spatial structure associated with the onset of atmospheric instability can be inferred purely from time series measurements.

摘要

近期的研究突出了在接近临界 tipping 阈值的动态系统中进行早期预警信号检测方法的实用性。通常这些临界点类似于局部分岔,其低维动力学可以在嵌入高得多维状态空间的流形上展现出来。在许多具有实际相关性的情况下,这种嵌入的形式了解甚少或完全未知。本文探讨了如何利用通常先于此类分岔出现的临界现象的测量来推断其嵌入的某些属性,反之,关于分岔机制的先验知识如何加强对即将到来的 tipping 事件的预测。这些分析模式首先在一个经历霍普夫分岔的简单流体流动系统上进行了演示。然后将相同的方法应用于与西非季风转变相关的数据,结果得到了同一系统现有模型的证实。这个例子突出了该方法即使应用于复杂气候数据时的有效性,并展示了如何仅从时间序列测量中推断出与大气不稳定开始相关的精细空间结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9660/11303533/390623f8494a/41598_2024_68177_Fig1_HTML.jpg

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