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Multi-Modal Hypergraph Enhanced LLM Learning for Recommendation

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arxiv 2504.10541 v2 pith:P4MNXX6P submitted 2025-04-13 cs.IR cs.AI

classification cs.IRcs.AI
keywords hypergraphrecommendationcorrelationslearningmultimodaluserbehaviorcapture
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The burgeoning presence of Large Language Models (LLM) is propelling the development of personalized recommender systems. Most existing LLM-based methods fail to sufficiently explore the multi-view graph structure correlations inherent in recommendation scenarios. To this end, we propose a novel framework, Hypergraph Enhanced LLM Learning for multimodal Recommendation (HeLLM), designed to equip LLMs with the capability to capture intricate higher-order semantic correlations by fusing graph-level contextual signals with sequence-level behavioral patterns. In the recommender pre-training phase, we design a user hypergraph to uncover shared interest preferences among users and an item hypergraph to capture correlations within multimodal similarities among items. The hypergraph convolution and synergistic contrastive learning mechanism are introduced to enhance the distinguishability of learned representations. In the LLM fine-tuning phase, we inject the learned graph-structured embeddings directly into the LLM's architecture and integrate sequential features capturing each user's chronological behavior. This process enables hypergraphs to leverage graph-structured information as global context, enhancing the LLM's ability to perceive complex relational patterns and integrate multimodal information, while also modeling local temporal dynamics. Extensive experiments demonstrate the superiority of our proposed method over state-of-the-art baselines, confirming the advantages of fusing hypergraph-based context with sequential user behavior in LLMs for recommendation.

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Cited by 1 Pith paper

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  1. HyperAgent4POI: Dynamic Semantic Message Passing on Multi-Agent Hypergraphs for Missing-Modality Recommendation

    cs.IR 2026-08 conditional novelty 6.0 of 10

    HyperAgent4POI couples per-layer LLM-based modality completion with soft hypergraph incidence refinement, reporting NDCG@20 gains of 7.4 to 9.4 percent over the strongest baseline at a 60 percent modality-missing rate.

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