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September 20, 20250 citations

fairGNN-WOD: Fair Graph Learning Without Complete Demographics

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ZWZichong WangFLFang LiuSPShimei Pan

Key Points

  • fairGNN-WOD significantly improves fairness while maintaining performance, outpacing existing methods.
  • The framework utilizes a novel approach to address bias in node representations, enhancing fairness objectives.
  • Experiments conducted on three real-world graph datasets confirm its effectiveness in promoting equity.
  • This work underscores the relevance of addressing fairness without demographic data, crucial for regulatory compliance.

Abstract

Graph Neural Networks (GNNs) have excelled in diverse applications due to their outstanding predictive performance, yet they often overlook fairness considerations, prompting numerous recent efforts to address this societal concern. However, most fair GNNs assume complete demographics by design, which is impractical in most real-world socially sensitive applications due to privacy, legal, or regulatory restrictions. For example, the Consumer Financial Protection Bureau (CFPB) mandates that creditors ensure fairness without requesting or collecting information about an applicant’s race, religion, nationality, sex, or other demographics. To this end, this paper proposes fairGNN-WOD, a first-of-its-kind framework that considers mitigating unfairness in graph learning without using demographic information. In addition, this paper provides a theoretical perspective on analyzing bias in node representations and establishes the relationship between utility and fairness objectives. Experiments on three real-world graph datasets illustrate that fairGNN-WOD outperforms state-of-the-art baselines in achieving fairness but also maintains comparable prediction performance.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68d46aa631b076d99fa67296https://doi.org/10.24963/ijcai.2025/63
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