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Bayesian Automatic Relevance Determination for Utility Function Specification in Discrete Choice Models

delete2022-04-01
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OA
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F
Filipe Rodrigues *
M
Michel Bierlaire
F
Francisco C. Pereira
DOI:10.1109/TITS.2020.3031965delete
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Abstract

Abstract

En 中文
Specifying utility functions is a key step towards applying the discrete choice framework for understanding the behaviour processes that govern user choices. However, identifying the utility function specifications that best model and explain the observed choices can be a very challenging and time-consuming task. This paper seeks to help modellers by leveraging the Bayesian framework and the concept of automatic relevance determination (ARD), in order to automatically determine an optimal utility function specification from an exponentially large set of possible specifications in a purely data-driven manner. Based on recent advances in approximate Bayesian inference, a doubly stochastic variational inference is developed, which allows the proposed MNL-ARD model to scale to very large and high-dimensional datasets. Using semi-artificial choice data, the proposed approach is shown to be able to accurately recover the true utility function specifications that govern the observed choices. Moreover, when applied to real choice data, MNL-ARD is able discover high quality specifications that can outperform previous ones from the literature according to multiple criteria, thereby demonstrating its practical applicability.
Keywords:
Discrete choice models
automatic relevance determination
automatic utility specification
doubly stochastic variational inference
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Journal

IEEE Transactions on Intelligent Transportation Systems cover
IEEE Transactions on Intelligent Transportation Systems
IF:
8.4
Papers:
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Citations:
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Organization

T
technical university of denmark
Scholars:
2.6W
Papers: 2.8W
Citations: 37
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swiss federal institutes of technology domain
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Papers: 8.0W
Citations: 163