
SISTA : learning optimal transport costs under sparsity constraints
Carlier, Guillaume; Dupuy, Arnaud; Galichon, Alfred; Sun, Yifei (2021), SISTA : learning optimal transport costs under sparsity constraints. https://basepub.dauphine.psl.eu/handle/123456789/22611
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Type
Document de travail / Working paperExternal document link
https://hal.archives-ouvertes.fr/hal-03504045Date
2021Series title
Cahier de recherche CEREMADE, Université Paris Dauphine-PSLPublished in
Paris
Pages
21
Metadata
Show full item recordAuthor(s)
Carlier, GuillaumeCEntre de REcherches en MAthématiques de la DEcision [CEREMADE]
Dupuy, Arnaud
University of Luxembourg [Luxembourg]
Galichon, Alfred
Courant Institute of Mathematical Sciences [New York] [CIMS]
Sun, Yifei
Courant Institute of Mathematical Sciences [New York] [CIMS]
Abstract (EN)
In this paper, we describe a novel iterative procedure called SISTA to learn the underlying cost in optimal transport problems. SISTA is a hybrid between two classical methods, coordinate descent ("S"-inkhorn) and proximal gradient descent ("ISTA"). It alternates between a phase of exact minimization over the transport potentials and a phase of proximal gradient descent over the parameters of the transport cost. We prove that this method converges linearly, and we illustrate on simulated examples that it is significantly faster than both coordinate descent and ISTA. We apply it to estimating a model of migration, which predicts the flow of migrants using country-specific characteristics and pairwise measures of dissimilarity between countries. This application demonstrates the effectiveness of machine learning in quantitative social sciences.Subjects / Keywords
Inverse optimal transport; Coordinate descent; ISTARelated items
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