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VocalNet: Speech LLM with Multi-Token Prediction for Faster and High-Quality Generation

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arxiv 2504.04060 v2 pith:BIIMAKK7 submitted 2025-04-05 cs.CL cs.AIcs.SDeess.AS

classification cs.CLcs.AIcs.SDeess.AS
keywords speechllmsgenerationpredictiontrainingvocalnetdatadesigned
verification ladder T0 review T1 audit T2 compute T3 formal
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Speech large language models (LLMs) have emerged as a prominent research focus in speech processing. We introduce VocalNet-1B and VocalNet-8B, a series of high-performance, low-latency speech LLMs enabled by a scalable and model-agnostic training framework designed for real-time voice interaction. Central to our contribution is the first application of multi-token prediction (MTP) to speech LLMs. This approach represents a paradigm shift from standard next-token prediction (NTP), offering simultaneous improvements in generation speed and quality. Informed by analysis of MTP's effect on speech generation and experimental comparisons, we designed a straightforward and highly effective MTP implementation. Experiments demonstrate that VocalNet performs on par with mainstream Omni LLMs even with limited training data, and significantly surpasses existing open-source speech LLMs. To foster reproducibility and community advancement, all model weights, inference code, training data, and framework implementations have been made publicly available at https://github.com/SJTU-OmniAgent/VocalNet

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Cited by 3 Pith papers

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

  1. Robust and Efficient Autoregressive Speech Synthesis with Dynamic Chunk-wise Prediction Policy

    cs.SD 2025-06 conditional novelty 6.0 of 10

    DCAR dynamically schedules chunk-wise token prediction in AR TTS, improving WER by up to 72.27% relative and speeding up inference by up to 2.89x over next-token baselines.

  2. Speech Token Prediction via Compressed-to-fine Language Modeling for Speech Generation

    eess.AS 2025-05 conditional novelty 6.0 of 10

    Compressed-to-fine language modeling improves speech token prediction by retaining prompt and local tokens while compressing long-range token spans into compact summaries.

  3. XSpecMesh: Quality-Preserving Auto-Regressive Mesh Generation Acceleration via Multi-Head Speculative Decoding

    cs.GR 2025-07 conditional novelty 5.0 of 10

    XSpecMesh speeds up auto-regressive mesh generation by about 1.7x using multi-head speculative decoding with cross-attention heads and a probability threshold verification, while keeping output quality close to the ba...

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