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Asymptotic stability of neutral functional differential equation model of genetic regulatory networks with time-varying delays

机译:时滞遗传控制网络中立型泛函微分方程模型的渐近稳定性

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In this paper we study the asymptotic stability of neutral functional differential equation (NFDE) model of genetic regulatory networks (GRNs) with time-varying delays. It is assumed that time varying delays belong to the predefined intervals. SUM regulatory logic was used for the modeling of the effects from other genes. We consider not only time delayed concentration of messenger ribonucleic acid (mRNA) and protein but also the derivative of time delayed concentration of mRNA. We derive sufficient stability conditions in forms of linear matrix inequalities (LMI) for given GRNs system. Simulation results and illustrative examples are included.
机译:本文研究时变时滞遗传调节网络(GRN)的中性泛函微分方程(NFDE)模型的渐近稳定性。假设时变延迟属于预定间隔。 SUM调节逻辑用于对其他基因的效应进行建模。我们不仅考虑信使核糖核酸(mRNA)和蛋白质的时间延迟浓度,还考虑mRNA的时间延迟浓度的导数。对于给定的GRNs系统,我们以线性矩阵不等式(LMI)的形式导出了足够的稳定性条件。包括仿真结果和说明性示例。

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