Homesick Lévy Walk: A Mobility Model Having Ichi-Go Ichi-e and Scale-Free Properties of Human Encounters

A. Fujihara, H. Miwa
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引用次数: 15

Abstract

In recent years, mobility models have been reconsidered based on findings by analyzing some big datasets collected by GPS sensors, cell phone call records, and Geotagging. To understand the fundamental statistical properties of the frequency of serendipitous human encounters, we conducted experiments to collect long-term data on human contact using short-range wireless communication devices which many people frequently carry in daily life. By analyzing the data we showed that the majority of human encounters occur once-in-an-experimental-period: they are Ichi-go Ichi-e. We also found that the remaining more frequent encounters obey a power-law distribution: they are scale-free. To theoretically find the origin of these properties, we introduced as a minimal human mobility model, Homesick Lévy walk, where the walker stochastically selects moving long distances as well as Lévy walk or returning back home. Using numerical simulations and a simple mean-field theory, we offer a theoretical explanation for the properties to validate the mobility model. The proposed model is helpful for evaluating long-term performance of routing protocols in delay tolerant networks and mobile opportunistic networks better since some utility-based protocols select nodes with frequent encounters for message transfer.
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思乡的lsamvy Walk:一种具有一走一走和人类相遇无标度特性的移动模型
近年来,通过分析GPS传感器、手机通话记录和地理标记收集的一些大数据集,人们对移动模型进行了重新思考。为了了解人类偶遇频率的基本统计特性,我们进行了实验,使用许多人在日常生活中经常携带的短距离无线通信设备收集人类接触的长期数据。通过分析数据,我们发现大多数人类遭遇只发生在一个实验期间:他们是一去一去。我们还发现,其余更频繁的相遇服从幂律分布:它们是无标度的。为了从理论上找到这些特性的起源,我们引入了一个最小的人类移动模型,思乡lsamvy walk,在这个模型中,步行者随机选择长距离移动以及lsamvy walk或回家。利用数值模拟和简单的平均场理论,对其性质进行了理论解释,验证了迁移率模型。该模型有助于更好地评估延迟容忍网络和移动机会网络中路由协议的长期性能,因为一些基于效用的协议选择频繁遇到的节点进行消息传输。
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