Copula-based transferable models for synthetic population generation

Fuente: arXiv
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Autori principali: Jutras-Dubé, Pascal, Al-Khasawneh, Mohammad B., Yang, Zhichao, Bas, Javier, Bastin, Fabian, Cirillo, Cinzia
Natura: Preprint
Pubblicazione: 2023
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author Jutras-Dubé, Pascal
Al-Khasawneh, Mohammad B.
Yang, Zhichao
Bas, Javier
Bastin, Fabian
Cirillo, Cinzia
author_facet Jutras-Dubé, Pascal
Al-Khasawneh, Mohammad B.
Yang, Zhichao
Bas, Javier
Bastin, Fabian
Cirillo, Cinzia
contents Population synthesis involves generating synthetic yet realistic representations of a target population of micro-agents for behavioral modeling and simulation. Traditional methods, often reliant on target population samples, such as census data or travel surveys, face limitations due to high costs and small sample sizes, particularly at smaller geographical scales. We propose a novel framework based on copulas to generate synthetic data for target populations where only empirical marginal distributions are known. This method utilizes samples from different populations with similar marginal dependencies, introduces a spatial component into population synthesis, and considers various information sources for more realistic generators. Concretely, the process involves normalizing the data and treating it as realizations of a given copula, and then training a generative model before incorporating the information on the marginals of the target population. Utilizing American Community Survey data, we assess our framework's performance through standardized root mean squared error (SRMSE) and so-called sampled zeros. We focus on its capacity to transfer a model learned from one population to another. Our experiments include transfer tests between regions at the same geographical level as well as to lower geographical levels, hence evaluating the framework's adaptability in varied spatial contexts. We compare Bayesian Networks, Variational Autoencoders, and Generative Adversarial Networks, both individually and combined with our copula framework. Results show that the copula enhances machine learning methods in matching the marginals of the reference data. Furthermore, it consistently surpasses Iterative Proportional Fitting in terms of SRMSE in the transferability experiments, while introducing unique observations not found in the original training sample.
format Preprint
id arxiv_https___arxiv_org_abs_2302_09193
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Copula-based transferable models for synthetic population generation
Jutras-Dubé, Pascal
Al-Khasawneh, Mohammad B.
Yang, Zhichao
Bas, Javier
Bastin, Fabian
Cirillo, Cinzia
Machine Learning
Population synthesis involves generating synthetic yet realistic representations of a target population of micro-agents for behavioral modeling and simulation. Traditional methods, often reliant on target population samples, such as census data or travel surveys, face limitations due to high costs and small sample sizes, particularly at smaller geographical scales. We propose a novel framework based on copulas to generate synthetic data for target populations where only empirical marginal distributions are known. This method utilizes samples from different populations with similar marginal dependencies, introduces a spatial component into population synthesis, and considers various information sources for more realistic generators. Concretely, the process involves normalizing the data and treating it as realizations of a given copula, and then training a generative model before incorporating the information on the marginals of the target population. Utilizing American Community Survey data, we assess our framework's performance through standardized root mean squared error (SRMSE) and so-called sampled zeros. We focus on its capacity to transfer a model learned from one population to another. Our experiments include transfer tests between regions at the same geographical level as well as to lower geographical levels, hence evaluating the framework's adaptability in varied spatial contexts. We compare Bayesian Networks, Variational Autoencoders, and Generative Adversarial Networks, both individually and combined with our copula framework. Results show that the copula enhances machine learning methods in matching the marginals of the reference data. Furthermore, it consistently surpasses Iterative Proportional Fitting in terms of SRMSE in the transferability experiments, while introducing unique observations not found in the original training sample.
title Copula-based transferable models for synthetic population generation
topic Machine Learning
url https://arxiv.org/abs/2302.09193