Sharp Analysis of Stochastic Optimization under Global Kurdyka-{\L}ojasiewicz Inequality
Abstract
We study the complexity of finding the global solution to stochastic nonconvex optimization when the objective function satisfies global Kurdyka-Lojasiewicz (KL) inequality and the queries from stochastic gradient oracles satisfy mild expected smoothness assumption. We first introduce a general framework to analyze Stochastic Gradient Descent (SGD) and its associated nonlinear dynamics under the setting. As a byproduct of our analysis, we obtain a sample complexity of for SGD when the objective satisfies the so called -PL condition, where is the degree of gradient domination. Furthermore, we show that a modified SGD with variance reduction and restarting (PAGER) achieves an improved sample complexity of when the objective satisfies the average smoothness assumption. This leads to the first optimal algorithm for the important case of which appears in applications such as policy optimization in reinforcement learning.
Cite
@article{arxiv.2210.01748,
title = {Sharp Analysis of Stochastic Optimization under Global Kurdyka-{\L}ojasiewicz Inequality},
author = {Ilyas Fatkhullin and Jalal Etesami and Niao He and Negar Kiyavash},
journal= {arXiv preprint arXiv:2210.01748},
year = {2022}
}
Comments
The work was submitted for review in May, 2022 and was accepted to NeurIPS 2022 in Sep, 2022