Revisiting Projection-Free Optimization for Strongly Convex Constraint Sets

November 14, 2018 ยท Declared Dead ยท ๐Ÿ› AAAI Conference on Artificial Intelligence

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Authors Jarrid Rector-Brooks, Jun-Kun Wang, Barzan Mozafari arXiv ID 1811.05831 Category cs.LG: Machine Learning Cross-listed cs.AI, math.OC Citations 9 Venue AAAI Conference on Artificial Intelligence Last Checked 5 months ago
Abstract
We revisit the Frank-Wolfe (FW) optimization under strongly convex constraint sets. We provide a faster convergence rate for FW without line search, showing that a previously overlooked variant of FW is indeed faster than the standard variant. With line search, we show that FW can converge to the global optimum, even for smooth functions that are not convex, but are quasi-convex and locally-Lipschitz. We also show that, for the general case of (smooth) non-convex functions, FW with line search converges with high probability to a stationary point at a rate of $O\left(\frac{1}{t}\right)$, as long as the constraint set is strongly convex -- one of the fastest convergence rates in non-convex optimization.
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