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Three stability criteria for delayed stochastic genetic regulatory networks and their conservativeness analysis

机译:延迟随机遗传调控网络的三个稳定性判据及其保守性分析

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This paper considers the problem of stability analysis of a class of delayed genetic regulatory networks (GRNs) with stochastic disturbances. By introducing appropriate Lyapunov-Krasovskii functional and employing free-weighting matrix approach, convex combination approach and delay-range partition approach, respectively, three stability criteria in the form of linear matrix inequalities are established to guarantee the considered GRNs to be asymptotically stable in the mean square sense. The change rate of time-varying delays is assumed to be less than infinity. So, these stability criteria are applicable to both fast and slow change rate of time-varying delays. Then, theoretical and numerical comparisons are given to evaluate the conservativeness of the proposed stability criteria.
机译:本文考虑一类具有随机干扰的时滞遗传调控网络(GRN)的稳定性分析问题。通过引入适当的Lyapunov-Krasovskii泛函并分别采用自由加权矩阵方法,凸组合方法和延迟范围划分方法,建立了线性矩阵不等式形式的三个稳定性标准,以确保考虑的GRN在模型中是渐近稳定的。均方根。时变延迟的变化率假定为小于无穷大。因此,这些稳定性标准适用于时变延迟的快速变化率和缓慢变化率。然后,进行理论和数值比较,以评估所提出的稳定性标准的保守性。

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