
Uplift Modeling from Separate Labels
Yamane, Ikko; Yger, Florian; Atif, Jamal; Sugiyama, Masashi (2018), Uplift Modeling from Separate Labels, in Bengio, Samy; Wallach, Hanna; Larochelle, Hugo; Grauman, Kristen; Cesa-Bianchi, Nicolò; Garnett, Roman, Advances in Neural Information Processing Systems 31 (NIPS 2018), Neural Information Processing Systems Foundation, Inc., p. 9927--9937
Type
Communication / ConférenceDate
2018Conference title
32nd Conference on Neural Information Processing Systems (NeurIPS 2018)Conference date
2018-12Conference city
MontréalConference country
CanadaBook title
Advances in Neural Information Processing Systems 31 (NIPS 2018)Book author
Bengio, Samy; Wallach, Hanna; Larochelle, Hugo; Grauman, Kristen; Cesa-Bianchi, Nicolò; Garnett, RomanPublisher
Neural Information Processing Systems Foundation, Inc.
Pages
9927--9937
Metadata
Show full item recordAuthor(s)
Yamane, IkkoUniversity of Tokyo, Graduate School of Frontier Sciences
Yger, Florian

Laboratoire d'analyse et modélisation de systèmes pour l'aide à la décision [LAMSADE]
Atif, Jamal
Laboratoire d'analyse et modélisation de systèmes pour l'aide à la décision [LAMSADE]
Sugiyama, Masashi
University of Tokyo
Abstract (EN)
Uplift modeling is aimed at estimating the incremental impact of an action on an individual's behavior, which is useful in various application domains such as targeted marketing (advertisement campaigns) and personalized medicine (medical treatments). Conventional methods of uplift modeling require every instance to be jointly equipped with two types of labels: the taken action and its outcome. However, obtaining two labels for each instance at the same time is difficult or expensive in many real-world problems. In this paper, we propose a novel method of uplift modeling that is applicable to a more practical setting where only one type of labels is available for each instance. We show a mean squared error bound for the proposed estimator and demonstrate its effectiveness through experiments.Subjects / Keywords
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