论文标题

捕食者的建模研究 - 纯粹的互动,提出诚实信号和提示

A modeling study of predator--prey interaction propounding honest signals and cues

论文作者

Al-Salman, Ahd Mahmoud, Chávez, Joseph Páez, Wijaya, Karunia Putra

论文摘要

诚实的信号和提示已被视为动物之间种间和种内交流的一部分。最近的理论表明,现有的信号系统通过捕食者施加的自然选择而发展。种间交流中的诚实信号可以提供对反侵犯技术演变的见解。在这项工作中,我们引入了确定性的三阶段,两种捕食者捕食者模型,该模型调节了诚实信号和线索对相互作用人群的影响。该模型是由一组源自信号传导和社会学习理论的第一原理构建的,在这些原理中,确定了掠食者对传递诚实信号或提示的反应。然后,捕食者使用信号决定是进行攻击还是节省其能量以更容易捕获。来自猎物人群的其他成员不熟悉表明其健身观察并学习技术。我们的数值分叉分析表明,提高捕食者的搜索速率和相应的同化效率,从捕食者捕集的丰度和稀缺性,持久性和近乎灭绝之间的稳定的短暂循环,是指向灭绝的同质轨道,最终,最终,Quasi-periodic Orbit。在猎物的内在出生率和承载能力的增长下,达到了类似的发现。当两个参数具有足够大的幅度时,诚实信号和提示之间的分离器会随着稳定平衡到准周期轨道的相似旅程。在建模的背景下,我们得出的结论是,在猎物丰度下,传输无错误的诚实信号不仅会导致稳定,而且会导致更可预测的Predator-Prey动力学。

Honest signals and cues have been observed as part of interspecific and intraspecific communication among animals. Recent theories suggest that existing signaling systems have evolved through natural selection imposed by predators. Honest signaling in the interspecific communication can provide insight into the evolution of anti-predation techniques. In this work, we introduce a deterministic three-stage, two-species predator-prey model, which modulates the impact of honest signals and cues on the interacting populations. The model is built from a set of first principles originated from signaling and social learning theory in which the response of predators to transmitted honest signals or cues is determined. The predators then use the signals to decide whether to pursue the attack or save their energy for an easier catch. Other members from the prey population that are not familiar with signaling their fitness observe and learn the technique. Our numerical bifurcation analysis indicates that increasing the predator's search rate and the corresponding assimilation efficiency gives a journey from predator-prey abundance and scarcity, a stable transient cycle between persistence and near-extinction, a homoclinic orbit pointing towards extinction, and ultimately, a quasi-periodic orbit. A similar discovery is met under the increment of the prey's intrinsic birth rate and carrying capacity. When both parameters are of sufficiently large magnitudes, the separator between honest signal and cue takes the similar journey from a stable equilibrium to a quasi-periodic orbit as it increases. In the context of modeling, we conclude that under prey abundance, transmitting error-free honest signals leads to not only a stable but also more predictable predator-prey dynamics.

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