arXiv · 2608.04321
A Linearly Convergent Projection-Free Algorithm for Smooth Convex Sets
Abstract
We consider minimizing a smooth, strongly convex function over a convex set. Projected gradient descent is known to converge linearly in this setting, but each iteration requires a projection onto the feasible set, which may be computationally expensive. We show that when the feasible set is smooth, projection can be replaced by one gradient computation and a single supporting-tangent computation per iteration, while preserving linear convergence. Moreover, the required tangent can be approximated to sufficient accuracy using $\widetilde O(d)$ membership-oracle queries, where $d$ is the ambient dimension. Previously, projection-free linear convergence was known only for polyhedral sets or for sets that are both smooth and strongly convex.
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Elad Hazan. 2026-08-05. A Linearly Convergent Projection-Free Algorithm for Smooth Convex Sets. https://arxiv.org/abs/2608.04321
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