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Simulating network structures using Bernoulli's principle

机译:使用伯努利原理模拟网络结构

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摘要

Using the fact that connections between vertices of a network often represent directed and weighted flows, we apply hydraulic principles to develop novel insights into network structure and growth. We develop a network model based on Bernoulli's principle and use it to analyze changes in network properties. Simulation results show that velocity of flow, resistance, fitness and existing connections in a system determine network connections of a vertex as well as overall network structure. We demonstrate how network structure is affected by changes in velocity and resistance, and how one vertex can monopolize connections within a network. Using Bernoulli's principle, we are able to independently reproduce key results in the network literature.
机译:利用网络顶点之间的连接通常代表有向流和加权流这一事实,我们应用水力原理对网络结构和增长提出了新颖的见解。我们基于伯努利原理开发网络模型,并使用它来分析网络属性的变化。仿真结果表明,系统的流动速度,阻力,适应性和现有连接关系决定了顶点的网络连接以及整个网络结构。我们演示了速度和阻力的变化如何影响网络结构,以及一个顶点如何垄断网络内的连接。使用伯努利原理,我们能够在网络文献中独立再现关键结果。

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