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Biological Conservation of a Prey-Predator System Incorporating Constant Prey Refuge Through Provision of Alternative Food to Predators: A Theoretical Study

机译:通过向捕食者提供替代性食物而结合了恒定的避难所的捕食者-捕食者系统的生物保护:一项理论研究

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We describe a prey-predator system incorporating constant prey refuge through provision of alternative food to predators. The proposed model deals with a problem of non-selective harvesting of a prey-predator system in which both the prey and the predator species obey logistic law of growth. The long-run sustain-ability of an exploited system is discussed through provision of alternative food to predators. We have analyzed the variability of the system in presence of constant prey refuge and examined the stabilizing effect on predator-prey system. The steady states of the system are derived and dynamical behavior of the system is extensively analyzed around steady states. The optimal harvesting policy is formulated and solved with the help of Pontryagin's maximal principle. Our objective is to maximize the monetary social benefit through protecting the predator species from extinction, keeping the ecological balance. Results finally illustrated with the help of numerical examples.
机译:我们描述了一种捕食者-捕食者系统,该系统通过向捕食者提供替代性食物而结合了恒定的避难所。所提出的模型处理了一个非选择性收获的捕食者-捕食者系统的问题,在该系统中,猎物和捕食者物种均服从逻辑增长规律。通过为掠食者提供替代食品,讨论了被开发系统的长期可持续性。我们分析了存在恒定避难所时系统的可变性,并研究了其对捕食者-被捕食系统的稳定作用。导出系统的稳态,并围绕稳态对系统的动力学行为进行广泛分析。借助庞特里亚金最大原理,制定并解决了最佳采伐策略。我们的目标是通过保护捕食物种免于灭绝,保持生态平衡来最大化货币社会效益。最后借助数值示例说明了结果。

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