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Aggregation methods in dynamical systems and applications in population and community dynamics

机译:动力学系统中的聚合方法及其在人口和社区动力学中的应用

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摘要

Approximate aggregation techniques allow one to transform a complex system involving many coupled variables into a simpler reduced model with a lesser number of global variables in such a way that the dynamics of the former can be approximated by that of the latter. In ecology, as a paradigmatic example, we are faced with modelling complex systems involving many variables corresponding to various interacting organization levels. This review is devoted to approximate aggregation methods that are based on the existence of different time scales, which is the case in many real systems as ecological ones where the different organization levels (individual, population, community and ecosystem) possess a different characteristic time scale. Two main goals of variables aggregation are dealt with in this work. The first one is to reduce the dimension of the mathematical model to be handled analytically and the second one is to understand how different organization levels interact and which properties of a given level emerge at other levels. The review is organized in three sections devoted to aggregation methods associated to different mathematical formalisms: ordinary differential equations, infinite-dimensional evolution equations and difference equations.
机译:近似聚合技术允许将包含多个耦合变量的复杂系统转换为具有较少全局变量的简化模型,从而使前者的动力学可以近似后者。在生态学中,作为一个范例,我们面临着对复杂系统进行建模的问题,该系统涉及许多变量,这些变量对应于各个相互作用的组织级别。这篇综述专门介绍了基于不同时间尺度存在的近似聚集方法,在许多实际系统中,例如生态系统,不同的组织级别(个人,人口,社区和生态系统)具有不同的特征时间尺度时就是这种情况。这项工作涉及变量聚集的两个主要目标。第一个是减少要分析处理的数学模型的维数,第二个是了解不同组织级别如何相互作用以及给定级别的哪些属性在其他级别出现。这篇综述分为三个部分,分别讨论与不同数学形式主义相关的聚合方法:常微分方程,无限维演化方程和差分方程。

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