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Distributed Zero-Order Optimization under Adversarial Noise

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Résumé

We study the problem of distributed zero-order optimization for a class of strongly convex functions. They are formed by the average of local objectives, associated to different nodes in a prescribed network. We propose a distributed zero-order projected gradient descent algorithm to solve the problem. Exchange of information within the network is permitted only between neighbouring nodes. An important feature of our procedure is that it can query only function values, subject to a general noise model, that does not require zero mean or independent errors. We derive upper bounds for the average cumulative regret and optimization error of the algorithm which highlight the role played by a network connectivity parameter, the number of variables, the noise level, the strong convexity parameter, and smoothness properties of the local objectives. The bounds indicate some key improvements of our method over the state-of-the-art, both in the distributed and standard zero-order optimization settings. We also comment on lower bounds and observe that the dependency over certain function parameters in the bound is nearly optimal.

langue originaleAnglais
titreAdvances in Neural Information Processing Systems 34 - 35th Conference on Neural Information Processing Systems, NeurIPS 2021
rédacteurs en chefMarc'Aurelio Ranzato, Alina Beygelzimer, Yann Dauphin, Percy S. Liang, Jenn Wortman Vaughan
EditeurNeural information processing systems foundation
Pages10209-10220
Nombre de pages12
ISBN (Electronique)9781713845393
étatPublié - 1 janv. 2021
Evénement35th Conference on Neural Information Processing Systems, NeurIPS 2021 - Virtual, Online
Durée: 6 déc. 202114 déc. 2021

Série de publications

NomAdvances in Neural Information Processing Systems
Volume13
ISSN (imprimé)1049-5258

Une conférence

Une conférence35th Conference on Neural Information Processing Systems, NeurIPS 2021
La villeVirtual, Online
période6/12/2114/12/21

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