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首页> 外文期刊>Ecological Modelling >A bio-inspired computing model as a new tool for modeling ecosystems: The avian scavengers as a case study
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A bio-inspired computing model as a new tool for modeling ecosystems: The avian scavengers as a case study

机译:生物启发的计算模型作为生态系统建模的新工具:以鸟类清除剂为例

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摘要

The models used for ecosystems modeling are generally based on differential equations. However, in recent years new computational models based on biological processes, or bioinspired models, have arisen, among which are P systems. These are inspired by the functions of cells and present important advantages with respect to traditional models, such as a high computational efficiency, modularity and their ability to work in parallel. They are simple, individual-based models that use biological parameters that can be obtained experimentally. In this work, we present the framework for a model based on P systems applied to the study of an ecosystem in which three avian scavengers (predators) interact with 10 wild and domestic ungulates (preys). The computation time for 100 repetitions, corresponding to 14 simulation years each, with an initial population composed of 385,422 individuals, was 30 min. Our results suggest that the model presented, based on P systems, correctly simulates the population dynamics in the period of time analyzed. We discuss the usefulness of this tool in simulating complex ecosystems dynamics to aid managers, conservationists and policy-makers in making appropriate decisions for the improvement of management and conservation programs.
机译:用于生态系统建模的模型通常基于微分方程。但是,近年来,出现了基于生物过程的新计算模型或受生物启发的模型,其中包括P系统。这些是受单元功能启发的,并且相对于传统模型具有重要的优势,例如高计算效率,模块化及其并行工作能力。它们是简单的基于个体的模型,它们使用可以通过实验获得的生物学参数。在这项工作中,我们提出了一个基于P系统的模型框架,该模型适用于生态系统的研究,其中三个鸟类清道夫(捕食者)与10个野生和家养有蹄类动物(猎物)相互作用。 100次重复的计算时间为30分钟,每个重复时间对应14个模拟年,初始种群由385,422个人组成。我们的结果表明,所提出的模型基于P系统,可以在所分析的时间内正确地模拟种群动态。我们讨论了该工具在模拟复杂的生态系统动态方面的有用性,以帮助管理人员,保护主义者和决策者制定适当的决策,以改善管理和保护计划。

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