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Personalized Federated Learning Techniques: Empirical Analysis

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arxiv 2409.06805 v1 pith:SHZXZZSH submitted 2024-09-10 cs.LG cs.AIcs.CR

classification cs.LGcs.AIcs.CR
keywords learningdatamethodspersonalizedaccuracycommunicationefficiencyfederated
verification ladder T0 review T1 audit T2 compute T3 formal
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Personalized Federated Learning (pFL) holds immense promise for tailoring machine learning models to individual users while preserving data privacy. However, achieving optimal performance in pFL often requires a careful balancing act between memory overhead costs and model accuracy. This paper delves into the trade-offs inherent in pFL, offering valuable insights for selecting the right algorithms for diverse real-world scenarios. We empirically evaluate ten prominent pFL techniques across various datasets and data splits, uncovering significant differences in their performance. Our study reveals interesting insights into how pFL methods that utilize personalized (local) aggregation exhibit the fastest convergence due to their efficiency in communication and computation. Conversely, fine-tuning methods face limitations in handling data heterogeneity and potential adversarial attacks while multi-objective learning methods achieve higher accuracy at the cost of additional training and resource consumption. Our study emphasizes the critical role of communication efficiency in scaling pFL, demonstrating how it can significantly affect resource usage in real-world deployments.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Memory as a Service (MaaS): Purpose-Bound Memory Mediation for Cooperative Agents

    cs.HC 2025-06 conditional novelty 4.0 of 10

    A position paper arguing that agent memory should be reframed from private local state to governed, purpose-bound services, illustrated by a design space but not validated.

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