Protecting Global Properties of Datasets with Distribution Privacy Mechanisms
July 18, 2022 Β· Declared Dead Β· π International Conference on Artificial Intelligence and Statistics
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Authors
Michelle Chen, Olga Ohrimenko
arXiv ID
2207.08367
Category
cs.CR: Cryptography & Security
Cross-listed
cs.CY,
cs.LG
Citations
15
Venue
International Conference on Artificial Intelligence and Statistics
Last Checked
5 months ago
Abstract
We consider the problem of ensuring confidentiality of dataset properties aggregated over many records of a dataset. Such properties can encode sensitive information, such as trade secrets or demographic data, while involving a notion of data protection different to the privacy of individual records typically discussed in the literature. In this work, we demonstrate how a distribution privacy framework can be applied to formalize such data confidentiality. We extend the Wasserstein Mechanism from Pufferfish privacy and the Gaussian Mechanism from attribute privacy to this framework, then analyze their underlying data assumptions and how they can be relaxed. We then empirically evaluate the privacy-utility tradeoffs of these mechanisms and apply them against a practical property inference attack which targets global properties of datasets. The results show that our mechanisms can indeed reduce the effectiveness of the attack while providing utility substantially greater than a crude group differential privacy baseline. Our work thus provides groundwork for theoretical mechanisms for protecting global properties of datasets along with their evaluation in practice.
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