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Delay-dependent stability criteria of delayed positive systems with uncertain control inputs: Application in mosquito-borne morbidities control

机译:具有不确定控制输入的延迟阳性系统的延迟依赖性稳定性标准:在蚊子传播的病态控制中的应用

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This note pays precise attention to derive the gamma-exponential stability results of positive delayed systems via non-fragile control. By using Lyapunov-Krasovskii theory some necessary conditions are derived. Moreover, by using results from spectrum analysis the sufficient conditions for positive delayed systems with non-fragile control are analyzed. Our main intension is to locate the ideal application of this type of systems. In later part of this paper, the novel mathematical model which describes the life stages of Aedes Aegypti mosquitoes is proposed. In that model, the life shorting bacteria called Wolbachia is used as a biological control. By moderately thinking about the uncertain conditions in the biological control we implemented the non-fragile control. By applying the proposed results the.-exponential stability of this population system is derived. Finally, some numerical examples are provided to expose the effectiveness of our predominant results. (C) 2020 Elsevier Inc. All rights reserved.
机译:本说明通过非脆弱控制推出正延迟系统的伽马指数稳定性结果。通过使用Lyapunov-Krasovskii理论,得到一些必要的条件。此外,通过使用频谱分析的结果,分析了具有非易碎控制的正延迟系统的充分条件。我们的主要内涵是找到这种类型的系统的理想应用。在本文的后部,提出了描述AEDEDIPI蚊子的生命阶段的新型数学模型。在该模型中,使用叫做Wolbachia的寿命短的细菌作为生物控制。通过中等考虑生物控制中的不确定条件,我们实施了非脆弱的控制。通过申请拟议的结果,推导出该群体系统的指数稳定性。最后,提供了一些数值例子以暴露我们主要结果的有效性。 (c)2020 Elsevier Inc.保留所有权利。

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