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Decentralized Event-Triggered Exponential Stability for Uncertain Delayed Genetic Regulatory Networks with Markov Jump Parameters and Distributed Delays

机译:具有马尔可夫跳跃参数和分布时滞的不确定时滞遗传控制网络的分散事件触发指数稳定性

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摘要

This paper is concerned with the stability problem for a class of decentralized event-triggered exponential stability for uncertain delayed genetic regulatory networks (GRNs) with Markov jump parameters and distributed delays. In order to reduce the information communication burden, the decentralized event-triggered mechanism is proposed in this paper. Exponential stability for the proposed GRNs are studied by the Lyapunov method and the matrix inequality techniques. Some new sufficient conditions are obtained to ensure the global exponential stability of the proposed GRNs. Furthermore, the proposed LMI results are computationally efficient which are easy to be verified via the Matlab LMI toolbox. In addition, four numerical examples are provided to illustrate the effectiveness of the theoretical results.
机译:本文涉及一类具有马尔可夫跳跃参数和分布时滞的不确定时滞遗传调节网络(GRN)的一类分散事件触发的指数稳定性问题。为了减轻信息通信负担,提出了一种分散式事件触发机制。利用Lyapunov方法和矩阵不等式技术研究了所提出的GRN的指数稳定性。获得了一些新的充分条件,以确保提议的GRN的全局指数稳定性。此外,建议的LMI结果在计算上是有效的,易于通过Matlab LMI工具箱进行验证。此外,提供了四个数值示例来说明理论结果的有效性。

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