AISTATS 2025poster0 citations

Distribution-Aware Mean Estimation under User-level Local Differential Privacy

Corentin Pla, Maxime Vono, Hugo Richard

Abstract

We consider the problem of mean estimation under user-level local differential privacy, where $n$ users are contributing through their local pool of data samples. Previous work assume that the number of data samples is the same across users. In contrast, we consider a more general and realistic scenario where each user $u \in [n]$ owns $m_u$ data samples drawn from some generative distribution $\mu$; $m_u$ being unknown to the statistician but drawn from a known distribution $M$ over $\mathbb{N}$. Based on a distribution-aware mean estimation algorithm, we establish an $M$-dependent upper bounds on the worst-case risk over $\mu$ for the task of mean estimation. We then derive a lower bound. The two bounds are asymptotically matching up to logarithmic factors and reduce to known bounds when $m_u = m$ for any user $u$.

BibTeX
@inproceedings{
pla2025distributionaware,
title={Distribution-Aware Mean Estimation under User-level Local Differential Privacy},
author={Corentin Pla and Maxime Vono and Hugo Richard},
booktitle={The 28th International Conference on Artificial Intelligence and Statistics},
year={2025},
url={https://openreview.net/forum?id=ThADV3tAIn}
}