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Chart-based Reasoning: Transferring Capabilities from LLMs to VLMs

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arxiv 2403.12596 v1 pith:EZXEXS3A submitted 2024-03-19 cs.CL

classification cs.CL
keywords capabilitiesreasoningvlmscitetimproveintroducedllmsmodels
verification ladder T0 review T1 audit T2 compute T3 formal
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Vision-language models (VLMs) are achieving increasingly strong performance on multimodal tasks. However, reasoning capabilities remain limited particularly for smaller VLMs, while those of large-language models (LLMs) have seen numerous improvements. We propose a technique to transfer capabilities from LLMs to VLMs. On the recently introduced ChartQA, our method obtains state-of-the-art performance when applied on the PaLI3-5B VLM by \citet{chen2023pali3}, while also enabling much better performance on PlotQA and FigureQA. We first improve the chart representation by continuing the pre-training stage using an improved version of the chart-to-table translation task by \citet{liu2023deplot}. We then propose constructing a 20x larger dataset than the original training set. To improve general reasoning capabilities and improve numerical operations, we synthesize reasoning traces using the table representation of charts. Lastly, our model is fine-tuned using the multitask loss introduced by \citet{hsieh2023distilling}. Our variant ChartPaLI-5B outperforms even 10x larger models such as PaLIX-55B without using an upstream OCR system, while keeping inference time constant compared to the PaLI3-5B baseline. When rationales are further refined with a simple program-of-thought prompt \cite{chen2023program}, our model outperforms the recently introduced Gemini Ultra and GPT-4V.

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Cited by 1 Pith paper

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  1. Enhancing Scientific Visual Question Answering through Multimodal Reasoning and Ensemble Modeling

    cs.CV 2025-07 conditional novelty 4.0 of 10

    On the SciVQA 2025 benchmark, an InternVL3 model with optimized prompts and chain-of-thought instructions reaches ROUGE-1 and ROUGE-L F1 of 0.740, and a figure-type-aware ensemble ranks 5th.

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