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Generative adversarial networks for data augmentation and transfer in credit card fraud detection

Author

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  • Alex Langevin
  • Tyler Cody
  • Stephen Adams
  • Peter Beling

Abstract

Augmenting a dataset with synthetic samples is a common processing step in machine learning with imbalanced classes to improve model performance. Another potential benefit of synthetic data is the ability to share information between cooperating parties while maintaining customer privacy. Often overlooked, however, is how the distribution of the data affects the potential gains from synthetic data augmentation. We present a case study in credit card fraud detection using Generative Adversarial Networks to generate synthetic samples, with explicit consideration given to customer distributions. We investigate two different cooperating party scenarios yielding four distinct customer distributions by credit quality. Our findings indicate that institutions skewed towards higher credit quality customers are more likely to benefit from augmentation with GANs. Relative gains from synthetic data transfer, in the absence of feature set heterogeneity, also appear to asymmetrically favour banks operating on the lower end of the credit spectrum, which we hypothesise is due to differences in spending behaviours.

Suggested Citation

  • Alex Langevin & Tyler Cody & Stephen Adams & Peter Beling, 2022. "Generative adversarial networks for data augmentation and transfer in credit card fraud detection," Journal of the Operational Research Society, Taylor & Francis Journals, vol. 73(1), pages 153-180, January.
  • Handle: RePEc:taf:tjorxx:v:73:y:2022:i:1:p:153-180
    DOI: 10.1080/01605682.2021.1880296
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