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Models to Assess the Effects of Nonsmooth Control and Stochastic Perturbation on Pest Control: A Pest-Natural-Enemy Ecosystem

机译:用于评估非运动控制和随机扰动对害虫防治影响的模型:一种害虫 - 自然 - 敌人生态系统

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This paper investigates the impact of the threshold control strategy and environmental randomness on pest control. Firstly, a fixed-time impulsive stochastic ecosystem with IPM strategy is proposed, where the local and global existence of positive solution and the boundedness of expectation are discussed in detail. Moreover a sufficient condition for the extinction of the pest population with probability-1 is given. Then, a state-dependent stochastic ecosystem with IPM strategy is proposed. By employing the numerical simulations, the effects of ambient noise intensity on pest-outbreak are discussed. The result shows that there is a close relationship among the frequency of pest-outbreak, ET, the environmental perturbation intensity, and control measures. This study helps us to understand the impact of random factors on pest-outbreak frequency by theoretical derivations and numerical simulations; the results have directive significance in the design of an optimal control strategy for the department of ecological agriculture.
机译:本文调查了阈值控制策略和环境随机性对害虫控制的影响。首先,提出了一种具有IPM策略的定期脉冲随机生态系统,其中详细讨论了积极解决的局部和全球存在和存在的界限。此外,给出了具有概率-1的害虫群消灭的足够条件。然后,提出了具有IPM策略的状态依赖随机生态系统。通过采用数值模拟,讨论了环境噪声强度对害虫爆发的影响。结果表明,疫情爆发,ET,环境扰动强度和控制措施的频率之间存在密切的关系。本研究有助于我们通过理论推导和数值模拟来了解随机因素对害虫爆发频率的影响;结果对生态农业部的最优控制策略设计有指导意义。

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