arXiv · 2402.16778
On the Growth of Mistakes in Differentially Private Online Learning: A Lower Bound Perspective
Abstract
In this paper, we provide lower bounds for Differentially Private (DP) Online Learning algorithms. Our result shows that, for a broad class of $(\varepsilon,\delta)$-DP online algorithms, for number of rounds $T$ such that $\log T\leq O(1 / \delta)$, the expected number of mistakes incurred by the algorithm grows as $\Omega(\log \frac{T}{\delta})$. This matches the upper bound obtained by Golowich and Livni (2021) and is in contrast to non-private online learning where the number of mistakes is independent of $T$. To the best of our knowledge, our work is the first result towards settling lower bounds for DP-Online learning and partially addresses the open question in Sanyal and Ramponi (2022).
Explore related subjects
Keep this discovery
Daniil Dmitriev, Kristóf Szabó, Amartya Sanyal. 2024-02-26. On the Growth of Mistakes in Differentially Private Online Learning: A Lower Bound Perspective. https://arxiv.org/abs/2402.16778
Cite the original work for its findings. Save a collection to share your selection of sources.