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  4. Robust Distributed Learning: Tight Error Bounds and Breakdown Point under Data Heterogeneity
 
conference paper not in proceedings

Robust Distributed Learning: Tight Error Bounds and Breakdown Point under Data Heterogeneity

Allouah, Youssef  
•
Guerraoui, Rachid  
•
Gupta, Nirupam  
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November 2, 2023
Thirty-seventh Conference on Neural Information Processing Systems

The theory underlying robust distributed learning algorithms, designed to resist adversarial machines, matches empirical observations when data is homogeneous. Under data heterogeneity however, which is the norm in practical scenarios, established lower bounds on the learning error are essentially vacuous and greatly mismatch empirical observations. This is because the heterogeneity model considered is too restrictive and does not cover basic learning tasks such as least-squares regression. We consider in this paper a more realistic heterogeneity model, namely gradient dissimilarity, and show that it covers a larger class of learning problems than existing theory. Notably, we show that the breakdown point under heterogeneity is lower than the classical fraction. We also prove a new lower bound on the learning error of any distributed learning algorithm. We derive a matching upper bound for a robust variant of distributed gradient descent, and empirically show that our analysis reduces the gap between theory and practice.

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Type
conference paper not in proceedings
Author(s)
Allouah, Youssef  
Guerraoui, Rachid  
Gupta, Nirupam  
Pinot, Rafaël  
Rizk, Geovani  
Date Issued

2023-11-02

Subjects

Optimization, Byzantine resilience, Distributed machine learning, federated learning

URL
https://openreview.net/forum?id=n3fPDW87is
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
DCL  
Event nameEvent placeEvent date
Thirty-seventh Conference on Neural Information Processing Systems

New Orleans, LA, USA

December 10-16, 2023

Available on Infoscience
November 12, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/202097
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