Homogenization scales in residential segregation through random walkers

IF 5.3 1区 数学 Q1 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS
Victoria Arcón, Inés Caridi
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引用次数: 0

Abstract

This paper proposes metrics to characterize and quantify the spatial scale of ethnic-based residential segregation using random walkers on city networks built from census data. We analyze the diversity of encounters experienced by the walkers over time. We provide a probabilistic framework and numerical methods to compute the probability of encountering a certain number of ethnic groups at each time, and use it to define two indices: the homogeneity scope, which represents the time when it becomes more likely or expected to leave the homogeneous area of the starting ethnic group, and the complete diversity scope, the time when it becomes more likely or expected to encounter all ethnic groups. These indices are also generalized to reach specific intermediate levels of diversity. We apply the methodology to lattice toy models and a case study in Rio de Janeiro. Our approach identifies areas and groups of high homogeneity, highlighting opportunities to enhance social interaction through improved connectivity. The proposed framework can be adapted for alternative definitions of city networks, broadening its applicability to various research interests.
随机步行者在住宅隔离中的同质化尺度
本文提出了基于人口普查数据构建的城市网络随机步行者的种族居住隔离空间尺度表征和量化指标。我们分析了随着时间的推移,步行者所经历的遭遇的多样性。我们提供了一个概率框架和数值方法来计算每次遇到一定数量族群的概率,并用它来定义两个指标:同质性范围,表示更有可能或预期离开起始族群的同质区域的时间;完全多样性范围,表示更有可能或预期遇到所有族群的时间。这些指数也被一般化,以达到特定的中间多样性水平。我们将该方法应用于格子玩具模型和巴西里约热内卢的一个案例研究。我们的方法确定了高度同质化的领域和群体,强调了通过改善连通性来加强社会互动的机会。提出的框架可以适用于城市网络的其他定义,扩大其对各种研究兴趣的适用性。
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来源期刊
Chaos Solitons & Fractals
Chaos Solitons & Fractals 物理-数学跨学科应用
CiteScore
13.20
自引率
10.30%
发文量
1087
审稿时长
9 months
期刊介绍: Chaos, Solitons & Fractals strives to establish itself as a premier journal in the interdisciplinary realm of Nonlinear Science, Non-equilibrium, and Complex Phenomena. It welcomes submissions covering a broad spectrum of topics within this field, including dynamics, non-equilibrium processes in physics, chemistry, and geophysics, complex matter and networks, mathematical models, computational biology, applications to quantum and mesoscopic phenomena, fluctuations and random processes, self-organization, and social phenomena.
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