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Plant disease models with nonlinear impulsive cultural control strategies for vegetatively propagated plants

机译:无性繁殖植物的带有非线性脉冲文化控制策略的植物病害模型

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In present work, with aims to eradicate plant diseases or maintain the number of infected plants below the Economic Threshold, the plant disease models including nonlinear impulsive functions and cultural control strategies are proposed and analyzed. Firstly, the model with impulsive effects at fixed moments is considered. The existence and stability of the disease-free periodic solution of the model are investigated. Moreover, we establish conditions for the permanence of the system and obtain the sufficient conditions under which the positive periodic solution exists by bifurcation theory. Secondly, the impulsive model with Economic Threshold for the infected plants is analyzed. The existence and stability of the positive periodic solution are discussed. Further, the complete expression of the period of the periodic solution is obtained. Our main results imply that we can choose proper control frequency and intensity to either eradicate the plant disease or maintain the number of infected plants below the Economic Threshold. The modeling and analytic methods presented here extend the classical results for the systems with impulsive interventions, and the findings can serve as an integrating measure to design appropriate plant disease control strategies.
机译:在目前的工作中,旨在根除植物病害或将受感染植物的数量保持在经济阈值以下,提出并分析了包括非线性脉冲函数和文化控制策略在内的植物病害模型。首先,考虑在固定时刻具有脉冲效应的模型。研究了该模型无病周期解的存在性和稳定性。此外,我们通过分岔理论建立了系统的持久性条件,并获得了存在正周期解的充分条件。其次,分析了具有经济阈值的被感染植物的脉冲模型。讨论了正周期解的存在性和稳定性。此外,获得周期解的周期的完整表达。我们的主要结果表明,我们可以选择适当的控制频率和强度来根除植物病害或将受感染植物的数量保持在经济阈值以下。本文介绍的建模和分析方法扩展了带有脉冲干预的系统的经典结果,这些发现可作为设计合适的植物病害控制策略的综合措施。

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