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Document Haystacks: Vision-Language Reasoning Over Piles of 1000+ Documents

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arxiv 2411.16740 v3 pith:X7XQ7B2X submitted 2024-11-23 cs.CV cs.AI

classification cs.CVcs.AI
keywords benchmarksdocumentimagesv-ragadditionallydochaystackinfohaystacklarge
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Large multimodal models (LMMs) have achieved impressive progress in vision-language understanding, yet they face limitations in real-world applications requiring complex reasoning over a large number of images. Existing benchmarks for multi-image question-answering are limited in scope, each question is paired with only up to 30 images, which does not fully capture the demands of large-scale retrieval tasks encountered in the real-world usages. To reduce these gaps, we introduce two document haystack benchmarks, dubbed DocHaystack and InfoHaystack, designed to evaluate LMM performance on large-scale visual document retrieval and understanding. Additionally, we propose V-RAG, a novel, vision-centric retrieval-augmented generation (RAG) framework that leverages a suite of multimodal vision encoders, each optimized for specific strengths, and a dedicated question-document relevance module. V-RAG sets a new standard, with a 9% and 11% improvement in Recall@1 on the challenging DocHaystack-1000 and InfoHaystack-1000 benchmarks, respectively, compared to the previous best baseline models. Additionally, integrating V-RAG with LMMs enables them to efficiently operate across thousands of images, yielding significant improvements on our DocHaystack and InfoHaystack benchmarks. Our code and datasets are available at https://github.com/Vision-CAIR/dochaystacks

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Cited by 1 Pith paper

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  1. Engineering RAG Systems for Real-World Applications: Design, Development, and Evaluation

    cs.SE 2025-06 conditional novelty 4.0 of 10

    A field study of five real-world RAG systems evaluated by 100 users, yielding user ratings and twelve engineering lessons.

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