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SIFU: Sequential Informed Federated Unlearning for Efficient and Provable Client Unlearning in Federated Optimization

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arxiv 2211.11656 v5 pith:5QQ7SYX5 submitted 2022-11-21 cs.LG

classification cs.LG
keywords unlearningfederatedsifuclientclientscontributionconvexfedavg
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Machine Unlearning (MU) is an increasingly important topic in machine learning safety, aiming at removing the contribution of a given data point from a training procedure. Federated Unlearning (FU) consists in extending MU to unlearn a given client's contribution from a federated training routine. While several FU methods have been proposed, we currently lack a general approach providing formal unlearning guarantees to the FedAvg routine, while ensuring scalability and generalization beyond the convex assumption on the clients' loss functions. We aim at filling this gap by proposing SIFU (Sequential Informed Federated Unlearning), a new FU method applying to both convex and non-convex optimization regimes. SIFU naturally applies to FedAvg without additional computational cost for the clients and provides formal guarantees on the quality of the unlearning task. We provide a theoretical analysis of the unlearning properties of SIFU, and practically demonstrate its effectiveness as compared to a panel of unlearning methods from the state-of-the-art.

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

  1. Efficient Federated Unlearning with Adaptive Differential Privacy Preservation

    cs.CR 2024-11 reject novelty 4.0 of 10

    FedADP combines adaptive per-round differential privacy, cosine-similarity-based selection of historical models and updates, and a calibration step to perform federated unlearning with reduced storage and communication.

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