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LIBMoE: A Library for comprehensive benchmarking Mixture of Experts in Large Language Models

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arxiv 2411.00918 v5 pith:7Z7JURQP submitted 2024-11-01 cs.CL cs.AIcs.LG

classification cs.CLcs.AIcs.LG
keywords libmoeroutingexpertcomprehensivegithubresearchalonganalysis
verification ladder T0 review T1 audit T2 compute T3 formal
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Mixture of experts (MoE) architectures have become a cornerstone for scaling up and are a key component in most large language models such as GPT-OSS, DeepSeek-V3, Llama-4, and Gemini-2.5. However, systematic research on MoE remains severely constrained by the prohibitive computational costs of training and evaluation, restricting large-scale studies accessible to most researchers. We introduce LibMoE, a unified framework for reproducible, efficient, and extensible MoE research that supports both pretraining and sparse-upcycling regimes. Beyond unified implementations, the framework provides transparent analytical tools for probing routing and expert dynamics. Leveraging this foundation, we conduct a comprehensive analysis along three dimensions: (i) routing dynamics, covering expert selection patterns, routing stability and optimality, and how routing entropy reveals task specialization and expert diversity; (ii) the effect of lightweight initialization on load balancing, demonstrating how subtle changes in router initialization shape early expert utilization; and (iii) training regime differences, revealing how sparse upcycling and full pretraining exhibit distinct routing patterns and stability profiles. By lowering the barrier to entry and standardizing evaluation, along with our comprehensive analysis, LibMoE broadens access to MoE research and establishes a reliable benchmark to guide future innovations. GitHub: \href{https://github.com/Fsoft-AIC/LibMoE}{https://github.com/Fsoft-AIC/LibMoE}.

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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. Sub-MoE: Efficient Mixture-of-Expert LLMs Compression via Subspace Expert Merging

    cs.LG 2025-06 conditional novelty 4.0 of 10

    Sub-MoE compresses MoE LLMs by K-means clustering of experts plus frequency-weighted merging of right singular vectors after a shared SVD, and claims 96 and 86 percent retained accuracy at 25 and 50 percent expert red...

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