Dynamical toy model of interacting $N$ agents robustly exhibiting Zipf's law

Tohru Tashiro, Megumi Koshiishi, Tetsuo Deguchi
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Abstract

We propose a dynamical toy model of agents which possess a quantity and have an interaction radius depending on the amount of the quantity. They exchange the quantity with agents existing within their interaction radii. It is shown in the paper that the distribution of the quantity of agents is robustly governed by Zipf's law for a small density of agents independent of the number of agents and the type of interaction, despite the simplicity of the rules. The model can exhibit other power laws with different exponents and the Gaussian distributions. The difference in the mechanism underlying Zipf's law and other power laws are studied by mapping the systems into graphs and investigating quantities characterizing the mapped graph. Thus, this model suggests one of the origins of Zipf's law, i.e., the most common fundamental characteristics necessary for Zipf's law to appear.
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稳健显示齐普夫定律的 N$ 个相互作用代理的动态玩具模型
我们提出了一个动态玩具模型,模型中的代理拥有一个数量,其互动半径取决于数量的多少。它们与存在于其相互作用半径内的代理交换数量。本文表明,尽管规则很简单,但在代理人密度较小的情况下,代理人数量的分布是由齐普夫定律稳健控制的,与代理人数量和相互作用类型无关。该模型可以表现出具有不同指数和高斯分布的其他幂律。通过将系统映射成图,并研究映射图的量值特征,研究了齐普夫定律与其他幂律的机制差异。因此,该模型提出了齐普夫定律的起源之一,即齐普夫定律出现所必需的最常见基本特征。
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