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Time Delayed Stage-Structured Predator-Prey Model with Birth Pulse and Pest Control Tactics

机译:具有出生脉冲和害虫控制策略的时间延迟阶段结构捕食者 - 猎物模型

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Normally, chemical pesticides kill not only pests but also their natural enemies. In order to better control the pests, two-time delayed stage-structured predator-prey models with birth pulse and pest control tactics are proposed and analyzed by using impulsive differential equations in present work. The stability threshold conditions for the mature prey-eradication periodic solutions of two models are derived, respectively. The effects of key parameters including killing efficiency rate, pulse period, the maximum birth effort per unit of time of natural enemy, and maturation time of prey on the threshold values are discussed in more detail. By comparing the two threshold values of mature prey-extinction, we provide the fact that the second control tactic is more effective than the first control method.
机译:通常,化学杀虫剂不仅杀害害虫,还杀死了他们的天敌。为了更好地控制害虫,提出了具有出生脉冲和害虫控制策略的两次延迟阶段结构的捕食者 - 捕食者模型,并通过使用当前工作中的脉冲微分方程来分析。推导出两种模型的成熟猎物周期解的稳定性阈值条件。更详细地讨论了关键参数,包括杀伤效率率,脉冲周期,每单位时间单位时间的最高出生努力以及阈值上的捕获时间的最高出生效果。通过比较成熟的猎物灭绝的两个阈值,我们提供了比第一控制方法更有效的事实。

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