为非对称输入网络的稳态分岔分类而努力

IF 2.6 2区 数学 Q1 MATHEMATICS, APPLIED
Manuela Aguiar, Ana Dias, Pedro Soares
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引用次数: 0

摘要

我们考虑了具有非对称输入的同质耦合细胞网络。我们获得了关于具有任意数量细胞和任意数量非对称输入的网络的一维稳态分岔的一般结果。这些结果完全依赖于网络邻接矩阵的特征值结构和网络同步子空间的存在与否。对于有三个细胞的网络,我们描述了可能的同步子空间网格,并标注了每个同步子空间的特征值。应用前面的结果,我们对具有一个、两个或六个不对称输入的三细胞最小网络可能出现的同步断裂稳态分岔进行了分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Towards a Classification of Steady-State Bifurcations for Networks with Asymmetric Inputs

Towards a Classification of Steady-State Bifurcations for Networks with Asymmetric Inputs

We consider homogeneous coupled cell networks with asymmetric inputs. We obtain general results concerning codimension-one steady-state bifurcations for networks with any number of cells and any number of asymmetric inputs. These results rely solely on the network adjacency matrices eigenvalue structure and the existence, or not, of network synchrony subspaces. For networks with three cells, we describe the possible lattices of synchrony subspaces annotated with the eigenvalues on each synchrony subspace. Applying the previous results, we classify the synchrony-breaking steady-state bifurcations that can occur for three-cell minimal networks with one, two or six asymmetric inputs.

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来源期刊
CiteScore
5.00
自引率
3.30%
发文量
87
审稿时长
4.5 months
期刊介绍: The mission of the Journal of Nonlinear Science is to publish papers that augment the fundamental ways we describe, model, and predict nonlinear phenomena. Papers should make an original contribution to at least one technical area and should in addition illuminate issues beyond that area''s boundaries. Even excellent papers in a narrow field of interest are not appropriate for the journal. Papers can be oriented toward theory, experimentation, algorithms, numerical simulations, or applications as long as the work is creative and sound. Excessively theoretical work in which the application to natural phenomena is not apparent (at least through similar techniques) or in which the development of fundamental methodologies is not present is probably not appropriate. In turn, papers oriented toward experimentation, numerical simulations, or applications must not simply report results without an indication of what a theoretical explanation might be. All papers should be submitted in English and must meet common standards of usage and grammar. In addition, because ours is a multidisciplinary subject, at minimum the introduction to the paper should be readable to a broad range of scientists and not only to specialists in the subject area. The scientific importance of the paper and its conclusions should be made clear in the introduction-this means that not only should the problem you study be presented, but its historical background, its relevance to science and technology, the specific phenomena it can be used to describe or investigate, and the outstanding open issues related to it should be explained. Failure to achieve this could disqualify the paper.
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