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时标同步的振荡响应可能导致非单调的 R 顶点。

Time-scale synchronisation of oscillatory responses can lead to non-monotonous R-tipping.

机构信息

Department Earth Science and Astrophysics, Complutense University of Madrid, Madrid, Spain.

Geosciences Institute, CSIC-UCM, Madrid, Spain.

出版信息

Sci Rep. 2023 Feb 6;13(1):2104. doi: 10.1038/s41598-023-28771-1.

Abstract

Rate-induced tipping (R-tipping) describes the fact that, for multistable dynamic systems, an abrupt transition can take place not only because of the forcing magnitude, but also because of the forcing rate. In the present work, we demonstrate through the case study of a piecewise-linear oscillator (PLO), that increasing the rate of forcing can make the system tip in some cases but might also prevent it from tipping in others. This counterintuitive effect is further called non-monotonous R-tipping (NMRT) and has already been observed in recent studies. We show that, in the present case, the reason for NMRT is the peak synchronisation of oscillatory responses operating on different time scales. We further illustrate that NMRT can be observed even in the presence of additive white noise of intermediate amplitude. Finally, NMRT is also observed on a van-der-Pol oscillator with an unstable limit cycle, suggesting that this effect is not limited to systems with a discontinuous right-hand side such as the PLO. This insight might be highly valuable, as the current research on tipping elements is shifting from an equilibrium to a dynamic perspective while using models of increasing complexity, in which NMRT might be observed but hard to understand.

摘要

速率诱导翻转(R-tipping)描述了这样一个事实,对于多稳定动态系统,不仅由于强迫幅度,而且由于强迫速率,可能会发生突然的转变。在本工作中,我们通过分段线性振荡器(PLO)的案例研究证明,增加强迫速率可以使系统在某些情况下翻转,但也可能在其他情况下阻止系统翻转。这种违反直觉的效应进一步被称为非单调 R-tipping(NMRT),并且已经在最近的研究中观察到。我们表明,在本案例中,NMRT 的原因是在不同时间尺度上运行的振荡响应的峰值同步。我们进一步说明,即使存在中等幅度的附加白噪声,也可以观察到 NMRT。最后,在具有不稳定极限环的范德波尔振荡器上也观察到 NMRT,表明这种效应不仅限于具有不连续右手边的系统,如 PLO。这一见解可能非常有价值,因为目前关于翻转元素的研究正在从平衡转向动态视角,同时使用越来越复杂的模型,在这些模型中可能会观察到 NMRT,但很难理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dd8/9902488/2c0a14bbf682/41598_2023_28771_Fig1_HTML.jpg

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