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Mathematical study of stage-structured pests control through impulsively released natural enemies with discrete and distributed delays

机译:通过离散和分布延迟的脉冲释放天敌控制阶段结构的害虫的数学研究

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摘要

Many insect pest species have two major stages in their life-history: an immature larval stage and a mature adult stage. The immature larval stage may have a significant duration, during which the insect may not be the same natural predators as in the adult stage. Keeping this biological background in mind, we propose a stage-structured natural enemy-pest model with distributed and discrete delays for natural enemy and pest, respectively. It is also assumed that the natural enemies are released in an impulsive manner. The global attractivity of the pest-extinction periodic solution of the system is obtained using comparison techniques on impulsive delay differential equations. Furthermore, the permanence conditions for the coexistence of the species are explored, which indicates that the maturation time delay and the amount of natural enemies released in a pulse can affect the dynamics of the system. The threshold values for maturation delay of pest and the releasing amount natural enemy are obtained for extinction and permanence of the species. Finally, numerical simulation is given in support of validation of the theoretical results to provide a strategic basis for the biological pest management.
机译:许多害虫物种在其生活史上有两个主要阶段:不成熟的幼虫阶段和成年阶段。不成熟的幼虫阶段可能会持续很长时间,在此期间昆虫可能与成年阶段的天敌不同。考虑到这一生物学背景,我们提出了一个具有阶段结构的天敌害虫模型,分别针对天敌和害虫具有分布式和离散的延迟。还假定天敌以冲动的方式释放。利用脉冲时滞微分方程的比较技术,获得了该系统灭虫周期解的全局吸引性。此外,探索了该物种共存的持久性条件,这表明成熟时间延迟和脉冲中释放的天敌数量会影响系统的动力学。获得有害生物成熟延迟的阈值和天敌的释放量,以决定该物种的灭绝和持久性。最后,通过数值模拟来验证理论结果,为生物病虫害防治提供战略依据。

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