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首页> 外文期刊>Chaos, Solitons and Fractals: Applications in Science and Engineering: An Interdisciplinary Journal of Nonlinear Science >Complicated dynamics of a predator-prey system with Watt-type functional response and impulsive control strategy
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Complicated dynamics of a predator-prey system with Watt-type functional response and impulsive control strategy

机译:具有瓦特型功能响应和冲动控制策略的捕食者 - 猎物系统的复杂动态

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摘要

Based on the classical predator-prey system with Watt-type functional response, an impulsive differential equations to model the process of periodic perturbations on the predator at different fixed time for pest control is proposed and investigated. It proves that there exists a globally asymptotically stable prey-eradication periodic solution when the impulse period is less than some critical value, and otherwise, the system can be permanent. Numerical results show that the system considered has more complicated dynamics involving quasi-periodic oscillation, narrow periodic window, wide periodic window, chaotic bands, period doubling bifurcation, symmetry-breaking pitchfork bifurcation, period-halving bifurcation and "crises", etc. It will be useful for studying the dynamic complexity of ecosystems. (C) 2006 Elsevier Ltd. All rights reserved.
机译:基于具有瓦特型功能响应的经典捕食者 - 猎物系统,提出了一种脉冲微分方程,以模拟捕食时间的捕食者在捕食时间的周期性扰动过程中进行探测。 它证明,当脉冲时期小于一些临界值时,存在全局渐近稳定的猎物周期性解决方案,否则,系统可以是永久性的。 数值结果表明,该系统被认为具有更复杂的动态涉及准周期性振荡,狭窄的周期性窗口,宽周期窗口,混沌条带,时期加倍分叉,对称性的波纹肉类分叉分岔,周期 - 减半分叉和“危机”等。它 将有助于研究生态系统的动态复杂性。 (c)2006年elestvier有限公司保留所有权利。

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