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Self-organized patterns of coexistence out of a predator-prey cellular automaton

机译:捕食者—食饵细胞自动机共存的自组织模式

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摘要

We present a stochastic approach to modeling the dynamics of coexistence of prey and predator populations. It is assumed that the space of coexistence is explicitly subdivided in a grid of cells. Each cell can be occupied by only one individual of each species or can be empty. The system evolves in time according to a probabilistic cellular automaton composed by a set of local rules which describe interactions between species individuals and mimic the process of birth, death and predation. By performing computational simulations, we found that, depending on the values of the parameters of the model, the following states can be reached: a prey absorbing state and active states of two types. In one of them both species coexist in a stationary regime with population densities constant in time. The other kind of active state is characterized by local coupled time oscillations of prey and predator populations. We focus on the self-organized structures arising from spatio-temporal dynamics of the coexistence. We identify distinct spatial patterns of prey and predators and verify that they are intimally connected to the time coexistence behavior of the species.
机译:我们提出一种随机的方法来建模的猎物和捕食者种群共存的动态。假设共存空间明确划分为单元格网格。每个单元只能被每个物种中的一个单独占据,也可以是空的。该系统根据概率性细胞自动机随时间变化,该自动机由一组描述物种个体之间相互作用并模拟出生,死亡和捕食过程的局部规则组成。通过执行计算仿真,我们发现,根据模型参数的值,可以达到以下状态:猎物吸收状态和活动状态两种。在其中一个中,这两个物种在固定的状态下共存,人口密度在时间上恒定。另一种活动状态的特征是猎物和掠食者种群的局部耦合时间振荡。我们关注由共存的时空动态产生的自组织结构。我们确定了猎物和掠食者的独特空间格局,并验证了它们与物种的时间共存行为密切相关。

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