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Multistability for Delayed Neural Networks via Sequential Contracting

机译:通过顺序签约的延迟神经网络的多重稳定性

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摘要

In this paper, we explore a variety of new multistability scenarios in the general delayed neural network system. Geometric structure embedded in equations is exploited and incorporated into the analysis to elucidate the underlying dynamics. Criteria derived from different geometric configurations lead to disparate numbers of equilibria. A new approach named sequential contracting is applied to conclude the global convergence to multiple equilibrium points of the system. The formulation accommodates both smooth sigmoidal and piecewise-linear activation functions. Several numerical examples illustrate the present analytic theory.
机译:在本文中,我们探索了一般延迟神经网络系统中的各种新的多稳定性场景。利用嵌入在方程式中的几何结构并将其合并到分析中以阐明潜在的动力学。来自不同几何构型的标准导致不同数量的平衡。应用一种称为顺序收缩的新方法来总结全局收敛到系统的多个平衡点。该配方同时具有平滑的S型和分段线性激活函数。几个数值示例说明了本分析理论。

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