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Private Mean Estimation of Heavy-Tailed Distributions

Data Structures and Algorithms 2021-02-17 v3 Cryptography and Security Information Theory Machine Learning math.IT Machine Learning

Abstract

We give new upper and lower bounds on the minimax sample complexity of differentially private mean estimation of distributions with bounded kk-th moments. Roughly speaking, in the univariate case, we show that n=Θ(1α2+1αkk1ε)n = \Theta\left(\frac{1}{\alpha^2} + \frac{1}{\alpha^{\frac{k}{k-1}}\varepsilon}\right) samples are necessary and sufficient to estimate the mean to α\alpha-accuracy under ε\varepsilon-differential privacy, or any of its common relaxations. This result demonstrates a qualitatively different behavior compared to estimation absent privacy constraints, for which the sample complexity is identical for all k2k \geq 2. We also give algorithms for the multivariate setting whose sample complexity is a factor of O(d)O(d) larger than the univariate case.

Keywords

Cite

@article{arxiv.2002.09464,
  title  = {Private Mean Estimation of Heavy-Tailed Distributions},
  author = {Gautam Kamath and Vikrant Singhal and Jonathan Ullman},
  journal= {arXiv preprint arXiv:2002.09464},
  year   = {2021}
}

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Appeared in COLT 2020

R2 v1 2026-06-23T13:49:46.974Z