Variation-aware Vision Token Dropping for Faster Large Vision-Language Models
Chen junjie, Xuyang Liu, Zichen Wen, Yiyu Wang, Siteng Huang, Junjie Chen
Abstract
Large vision-language models (LVLMs) have demonstrated remarkable capabilities in multimodal understanding tasks. However, the increasing demand for high-resolution image and long-video understanding results in substantial token counts, leading to reduced inference efficiency. Token compression offers a direct solution by reducing the number of tokens to be processed, thereby improving computational efficiency. Through extensive analysis, we identify two critical limitations in existing inner-LLM token compression methods: positional bias and incompatibility with efficient operators, which hinder their practical deployment for LVLM acceleration. This paper presents the first approach from a token variation perspective, revealing that visual token variations within LLMs exhibit task-agnostic properties. We propose Variation-aware Vision Token Dropping (i.e., VDrop), which progressively removes visual tokens with minimal variation during LVLM inference, thereby enhancing computational efficiency. Extensive experiments across multiple models and benchmarks demonstrate that our VDrop is able to maintain 94.0% and 98.6% of the original performance for image and video understanding tasks respectively, while reducing LLM generation latency by 31.5% and 74.2%. When combined with efficient operators, VDrop further reduces GPU peak memory usage. Code is available in supplementary materials.
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Install the CLIlune papers fulltext 4b6c8f10-3e8b-46c6-8bf7-9280bc61e3b8Cited by top-tier papers8
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