数学
多项式的
符号
控制器(灌溉)
基质(化学分析)
应用数学
离散数学
纯数学
数学分析
算术
农学
生物
复合材料
材料科学
作者
Liqun Zhou,Zhi-Xue Zhao,Quanxin Zhu,Rui Zhou,Tingwen Huang
标识
DOI:10.1109/tnse.2023.3300907
摘要
The stabilization of a class of impulsive neural networks (INNs) with bidirectional proportional delays (BPDs) is considered. Here, both the INNs and the impulsive conditions are constrained by BPDs. First, the vector form of the INNs with BPDs is presented based on vector properties. A proportional delay-dependent feedback controller is designed, and a novel delay differential inequality (DDI) in vector form is constructed by utilizing the properties of $M$ -matrix and the reduction to absurdity. Under the proposed controller, by using newly established DDI, the properties of $M$ -cone and $M$ -matrix, and matrix spectral radius theory, and it is proved that the equilibrium of studied INNs exists and is unique. And the global exponential stabilization criterion of the equivalent system of studied INNs and its own global polynomial stabilization criterion are obtained. Ultimately, a numerical example involving two cases is listed to test the accuracy for the acquired criteria.
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