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首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >Stability Analysis and Bifurcation Control of a Delayed Incommensurate Fractional-Order Gene Regulatory Network
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Stability Analysis and Bifurcation Control of a Delayed Incommensurate Fractional-Order Gene Regulatory Network

机译:延迟不计的分数阶基因监管网络稳定性分析及分岔控制

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摘要

In this paper, stability analysis and bifurcation control for a novel incommensurate fractional-order delayed gene regulatory network are investigated. Firstly, the associated characteristic equation is analyzed by taking time delay as a bifurcation parameter, and the conditions of creation for Hopf bifurcation are established. It is demonstrated that the time delay can profoundly affect the dynamics of the proposed system and each order has a significant influence on the creation of bifurcation simultaneously. Then we study the stability and bifurcation behavior of the fractional-order networks by adding a nonlinear feedback controller. Finally, numerical simulations of two examples validate the obtained results.
机译:本文研究了一种新的中非甲酸分数次级延迟基因调节网络的稳定性分析和分岔对照。 首先,通过将时间延迟作为分叉参数来分析相关的特征方程,建立了Hopf分叉的创建条件。 据证明,时间延迟可以深刻地影响所提出的系统的动态,并且每个秩序同时对分叉的产生产生重大影响。 然后我们通过添加非线性反馈控制器来研究分数级网络的稳定性和分岔行为。 最后,两个例子的数值模拟验证了所获得的结果。

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