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A Maximal Correlation Framework for Fair Machine Learning
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entropy-24-00461-v2.pdf
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721.65 KB
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Author(s) • • • • • •
Lee, Joshua
Bu, Yuheng
Sattigeri, Prasanna
Panda, Rameswar
Wornell, Gregory W.
Karlinsky, Leonid
Schmidt Feris, Rogerio
Date Issued
March 26, 2022
Publisher
Multidisciplinary Digital Publishing Institute
Citation
Entropy 24 (4): 461 (2022)
Version
Final published version
Abstract
As machine learning algorithms grow in popularity and diversify to many industries, ethical and legal concerns regarding their fairness have become increasingly relevant. We explore the problem of algorithmic fairness, taking an information–theoretic view. The maximal correlation framework is introduced for expressing fairness constraints and is shown to be capable of being used to derive regularizers that enforce independence and separation-based fairness criteria, which admit optimization algorithms for both discrete and continuous variables that are more computationally efficient than existing algorithms. We show that these algorithms provide smooth performance–fairness tradeoff curves and perform competitively with state-of-the-art methods on both discrete datasets (COMPAS, Adult) and continuous datasets (Communities and Crimes).
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Creative Commons Attribution
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DOI of Published Version
http://dx.doi.org/10.3390/e24040461