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Fine-tuning Multimodal Large Language Models for Product Bundling

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arxiv 2407.11712 v4 pith:R6PTL7PE submitted 2024-07-16 cs.IR

classification cs.IR
keywords bundlingllmsproductmultimodalknowledgeunderstandingapproachdata
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent advances in product bundling have leveraged multimodal information through sophisticated encoders, but remain constrained by limited semantic understanding and a narrow scope of knowledge. Therefore, some attempts employ In-context Learning (ICL) to explore the potential of large language models (LLMs) for their extensive knowledge and complex reasoning abilities. However, these efforts are inadequate in understanding mulitmodal data and exploiting LLMs' knowledge for product bundling. To bridge the gap, we introduce Bundle-MLLM, a novel framework that fine-tunes LLMs through a hybrid item tokenization approach within a well-designed optimization strategy. Specifically, we integrate textual, media, and relational data into a unified tokenization, introducing a soft separation token to distinguish between textual and non-textual tokens. Additionally, a streamlined yet powerful multimodal fusion module is employed to embed all non-textual features into a single, informative token, significantly boosting efficiency. To tailor product bundling tasks for LLMs, we reformulate the task as a multiple-choice question with candidate items as options. We further propose a progressive optimization strategy that fine-tunes LLMs for disentangled objectives: 1) learning bundle patterns and 2) enhancing multimodal semantic understanding specific to product bundling. Extensive experiments on four datasets across two domains demonstrate that our approach outperforms a range of state-of-the-art (SOTA) methods.

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    cs.CR 2025-02 conditional novelty 4.0 of 10

    A survey of LLM-based vulnerability detection covering 58 papers, with a taxonomy, dataset overview, and gap analysis, but limited by non-transparent selection and unsupported quantitative claims.

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