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Drop-Upcycling: Training Sparse Mixture of Experts with Partial Re-initialization

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arxiv 2502.19261 v2 pith:PIAYRC3N submitted 2025-02-26 cs.CL cs.AIcs.LG

classification cs.CLcs.AIcs.LG
keywords modeltrainingdensedrop-upcyclingperformancesignificantlywhileapproach
verification ladder T0 review T1 audit T2 compute T3 formal
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The Mixture of Experts (MoE) architecture reduces the training and inference cost significantly compared to a dense model of equivalent capacity. Upcycling is an approach that initializes and trains an MoE model using a pre-trained dense model. While upcycling leads to initial performance gains, the training progresses slower than when trained from scratch, leading to suboptimal performance in the long term. We propose Drop-Upcycling - a method that effectively addresses this problem. Drop-Upcycling combines two seemingly contradictory approaches: utilizing the knowledge of pre-trained dense models while statistically re-initializing some parts of the weights. This approach strategically promotes expert specialization, significantly enhancing the MoE model's efficiency in knowledge acquisition. Extensive large-scale experiments demonstrate that Drop-Upcycling significantly outperforms previous MoE construction methods in the long term, specifically when training on hundreds of billions of tokens or more. As a result, our MoE model with 5.9B active parameters achieves comparable performance to a 13B dense model in the same model family, while requiring approximately 1/4 of the training FLOPs. All experimental resources, including source code, training data, model checkpoints and logs, are publicly available to promote reproducibility and future research on MoE.

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  1. Grove MoE: Towards Efficient and Superior MoE LLMs with Adjugate Experts

    cs.CL 2025-08 unverdicted novelty 5.0 of 10

    Grove MoE uses unequal-size adjugate experts with complexity-based activation to run 33B-parameter models at roughly 3.1 to 3.3B active parameters while matching larger open models in benchmarks.

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