Differentially Private Simple Linear Regression
July 10, 2020 ยท Declared Dead ยท ๐ Proceedings on Privacy Enhancing Technologies
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Authors
Daniel Alabi, Audra McMillan, Jayshree Sarathy, Adam Smith, Salil Vadhan
arXiv ID
2007.05157
Category
cs.LG: Machine Learning
Cross-listed
cs.CR,
stat.ME,
stat.ML
Citations
60
Venue
Proceedings on Privacy Enhancing Technologies
Last Checked
5 months ago
Abstract
Economics and social science research often require analyzing datasets of sensitive personal information at fine granularity, with models fit to small subsets of the data. Unfortunately, such fine-grained analysis can easily reveal sensitive individual information. We study algorithms for simple linear regression that satisfy differential privacy, a constraint which guarantees that an algorithm's output reveals little about any individual input data record, even to an attacker with arbitrary side information about the dataset. We consider the design of differentially private algorithms for simple linear regression for small datasets, with tens to hundreds of datapoints, which is a particularly challenging regime for differential privacy. Focusing on a particular application to small-area analysis in economics research, we study the performance of a spectrum of algorithms we adapt to the setting. We identify key factors that affect their performance, showing through a range of experiments that algorithms based on robust estimators (in particular, the Theil-Sen estimator) perform well on the smallest datasets, but that other more standard algorithms do better as the dataset size increases.
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