Sociohydrodynamics: data-driven modelling of social behavior

Fuente: arXiv
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Main Authors: Seara, Daniel S., Colen, Jonathan, Fruchart, Michel, Avni, Yael, Martin, David, Vitelli, Vincenzo
Format: Preprint
Published: 2023
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author Seara, Daniel S.
Colen, Jonathan
Fruchart, Michel
Avni, Yael
Martin, David
Vitelli, Vincenzo
author_facet Seara, Daniel S.
Colen, Jonathan
Fruchart, Michel
Avni, Yael
Martin, David
Vitelli, Vincenzo
contents Living systems display complex behaviors driven by physical forces as well as decision-making. Hydrodynamic theories hold promise for simplified universal descriptions of socially-generated collective behaviors. However, the construction of such theories is often divorced from the data they should describe. Here, we develop and apply a data-driven pipeline that links micromotives to macrobehavior by augmenting hydrodynamics with individual preferences that guide motion. We illustrate this pipeline on a case study of residential dynamics in the United States, for which census and sociological data is available. Guided by Census data, sociological surveys, and neural network analysis, we systematically assess standard hydrodynamic assumptions to construct a sociohydrodynamic model. Solving our simple hydrodynamic model, calibrated using statistical inference, qualitatively captures key features of residential dynamics at the level of individual US counties. We highlight that a social memory, akin to hysteresis in magnets, emerges in the segregation-integration transition even with memory-less agents. This suggests an explanation for the phenomenon of neighborhood tipping, whereby a small change in a neighborhood's population leads to a rapid demographic shift. Beyond residential segregation, our work paves the way for systematic investigations of decision-guided motility in real space, from micro-organisms to humans, as well as fitness-mediated motion in more abstract genomic spaces.
format Preprint
id arxiv_https___arxiv_org_abs_2312_17627
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Sociohydrodynamics: data-driven modelling of social behavior
Seara, Daniel S.
Colen, Jonathan
Fruchart, Michel
Avni, Yael
Martin, David
Vitelli, Vincenzo
Soft Condensed Matter
Statistical Mechanics
Adaptation and Self-Organizing Systems
Pattern Formation and Solitons
Physics and Society
Living systems display complex behaviors driven by physical forces as well as decision-making. Hydrodynamic theories hold promise for simplified universal descriptions of socially-generated collective behaviors. However, the construction of such theories is often divorced from the data they should describe. Here, we develop and apply a data-driven pipeline that links micromotives to macrobehavior by augmenting hydrodynamics with individual preferences that guide motion. We illustrate this pipeline on a case study of residential dynamics in the United States, for which census and sociological data is available. Guided by Census data, sociological surveys, and neural network analysis, we systematically assess standard hydrodynamic assumptions to construct a sociohydrodynamic model. Solving our simple hydrodynamic model, calibrated using statistical inference, qualitatively captures key features of residential dynamics at the level of individual US counties. We highlight that a social memory, akin to hysteresis in magnets, emerges in the segregation-integration transition even with memory-less agents. This suggests an explanation for the phenomenon of neighborhood tipping, whereby a small change in a neighborhood's population leads to a rapid demographic shift. Beyond residential segregation, our work paves the way for systematic investigations of decision-guided motility in real space, from micro-organisms to humans, as well as fitness-mediated motion in more abstract genomic spaces.
title Sociohydrodynamics: data-driven modelling of social behavior
topic Soft Condensed Matter
Statistical Mechanics
Adaptation and Self-Organizing Systems
Pattern Formation and Solitons
Physics and Society
url https://arxiv.org/abs/2312.17627