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Linear Mode Connectivity and the Lottery Ticket Hypothesis

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arxiv 1912.05671 v4 pith:UF3OQ4MV submitted 2019-12-11 cs.LG cs.NEstat.ML

classification cs.LGcs.NEstat.ML
keywords noiseaccuracyconnectedearlyfindfullhypothesislinearly
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We study whether a neural network optimizes to the same, linearly connected minimum under different samples of SGD noise (e.g., random data order and augmentation). We find that standard vision models become stable to SGD noise in this way early in training. From then on, the outcome of optimization is determined to a linearly connected region. We use this technique to study iterative magnitude pruning (IMP), the procedure used by work on the lottery ticket hypothesis to identify subnetworks that could have trained in isolation to full accuracy. We find that these subnetworks only reach full accuracy when they are stable to SGD noise, which either occurs at initialization for small-scale settings (MNIST) or early in training for large-scale settings (ResNet-50 and Inception-v3 on ImageNet).

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 100 citations worldwide. Full citation record

  1. Rethinking Heterogeneous LLM Merging: A Weighted Model Averaging Perspective

    cs.AI 2026-07 conditional novelty 5.0 of 10

    After truncating or expanding checkpoints to a shared shape, small-ratio weight averaging slightly improves average benchmark scores over strong Qwen sources, but headline gains are inflated by per-task best-ratio selection.

  2. Revisiting Bayesian Model Averaging in the Era of Foundation Models

    cs.LG 2025-05 reject novelty 4.0 of 10

    The paper proposes Bayesian model averaging and an entropy-minimizing weight optimizer for ensembling foundation models, reporting accuracy gains over output averaging on image and text classification tasks.

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