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Coarse-grained analysis of stochasticity-induced switching between collective motion states

机译:集体运动状态之间的随机性切换的粗粒度分析

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摘要

A single animal group can display different types of collective motion at different times. For a one-dimensional individual-based model of self-organizing group formation, we show that repeated switching between distinct ordered collective states can occur entirely because of stochastic effects. We introduce a framework for the coarse-grained, computer-assisted analysis of such stochasticity-induced switching in animal groups. This involves the characterization of the behavior of the system with a single dynamically meaningful "coarse observable" whose dynamics are described by an effective Fokker-Planck equation. A "lifting" procedure is presented, which enables efficient estimation of the necessary macroscopic quantities for this description through short bursts of appropriately initialized computations. This leads to the construction of an effective potential, which is used to locate metastable collective states, and their parametric dependence, as well as estimate mean switching times.
机译:单个动物组可以在不同时间显示不同类型的集体运动。对于一维基于个体的自组织群体形成模型,我们表明,由于随机效应,完全有可能在完全不同的有序集合状态之间进行反复切换。我们为动物群体中的这种随机性诱导的转换引入了一种粗粒度的计算机辅助分析框架。这涉及使用单个动态有意义的“粗可观察”来表征系统的行为,其动态由有效的Fokker-Planck方程描述。提出了“提升”过程,该过程使得能够通过适当初始化的计算的短脉冲串有效地估计该描述所需的宏观量。这导致有效电位的构建,该有效电位用于定位亚稳态集体状态及其参数依赖性,并估计平均切换时间。

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