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Global Exponential Stability Analysis for A Class of Coupled Cyclic Genetic Regulatory Networks with Multiple Time-Varying Delays

机译:多种时变延迟的一类耦合循环遗传调控网络的全局指数稳定性分析

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The coupled repressilators, as a special case of cyclic genetic regulatory networks, can be used to adjust oscillations at the cellular level, and hence it have received extensive attention from many scholars. This paper addresses the problem of global exponential stability analysis for nonnegative equilibrium points of a class of coupled repressilator models with multiple time-varying delays. Sufficient conditions are investigated to guarantee that the considered model has a unique nonnegative equilibrium point which is globally exponentially stable. The obtained criteria are composed of several simple linear inequalities that are only related to the model parameters, so they can be easily verified by using the standard software tools. The results of two illustrative examples present the effectiveness of the proposed approach.
机译:作为循环遗传调节网络的特殊情况,耦合的抑制因子可用于调整蜂窝水平的振荡,因此它已从许多学者中获得广泛的关注。 本文解决了多种时变延迟的一类耦合抑制器模型的非负指数稳定性分析问题的问题。 研究了充分的条件以保证所考虑的模型具有独特的非负平衡点,其全球性稳定。 所获得的标准由几种简单的线性不等式组成,其仅与模型参数相关,因此可以通过使用标准软件工具轻松验证它们。 两个说明性实施例的结果呈现了所提出的方法的有效性。

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