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首页> 外文期刊>Discrete dynamics in nature and society >Neimark-Sacker-Turing Instability and Pattern Formation in a Spatiotemporal Discrete Predator-Prey System with Allee Effect
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Neimark-Sacker-Turing Instability and Pattern Formation in a Spatiotemporal Discrete Predator-Prey System with Allee Effect

机译:具有Allee效应的时空离散捕食-被捕食系统的Neimark-Sacker-Turing不稳定性和模式形成

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A spatiotemporal discrete predator-prey system with Allee effect is investigated to learn its Neimark-Sacker-Turing instability and pattern formation. Based on the occurrence of stable homogeneous stationary states, conditions for Neimark-Sacker bifurcation and Turing instability are determined. Numerical simulations reveal that Neimark-Sacker bifurcation triggers a route to chaos, with the emergence of invariant closed curves, periodic orbits, and chaotic attractors. The occurrence of Turing instability on these three typical dynamical behaviors leads to the formation of heterogeneous patterns. Under the effects of Neimark-Sacker-Turing instability, pattern evolution process is sensitive to tiny changes of initial conditions, suggesting the occurrence of spatiotemporal chaos. With application of deterministic initial conditions, transient symmetrical patterns are observed, demonstrating that ordered structures can exist in chaotic processes. Moreover, when local kinetics of the system goes further on the route to chaos, the speed of symmetry breaking becomes faster, leading to more fragmented and more disordered patterns at the same evolution time. The rich spatiotemporal complexity provides new comprehension on predator-prey coexistence in the ways of spatiotemporal chaos.
机译:研究了具有Allee效应的时空离散捕食者—食饵系统,以了解其Neimark-Sacker-Turing不稳定性和模式形成。根据稳定的均匀稳态的发生,确定Neimark-Sacker分叉和图灵不稳定性的条件。数值模拟表明,随着不变的闭合曲线,周期轨道和混沌吸引子的出现,Neimark-Sacker分叉触发了通往混沌的路线。在这三种典型的动力学行为上发生图灵不稳定性会导致异质模式的形成。在Neimark-Sacker-Turing不稳定性的影响下,模式演化过程对初始条件的微小变化敏感,表明时空混乱的发生。通过应用确定性初始条件,可以观察到瞬态对称模式,这表明有序结构可以存在于混沌过程中。此外,当系统的局部动力学进一步趋于混乱时,对称性破坏的速度会更快,从而导致在同一进化时间出现更多碎片化和无序化的模式。丰富的时空复杂性以时空混沌的方式为食肉动物与猎物的共存提供了新的理解。

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