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Large Language Models Enhanced Collaborative Filtering

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arxiv 2403.17688 v2 pith:NCIMYFMG submitted 2024-03-26 cs.IR

classification cs.IR
keywords llmscollaborativefilteringmodelscapabilitiesknowledgelanguagelarge
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Recent advancements in Large Language Models (LLMs) have attracted considerable interest among researchers to leverage these models to enhance Recommender Systems (RSs). Existing work predominantly utilizes LLMs to generate knowledge-rich texts or utilizes LLM-derived embeddings as features to improve RSs. Although the extensive world knowledge embedded in LLMs generally benefits RSs, the application can only take limited number of users and items as inputs, without adequately exploiting collaborative filtering information. Considering its crucial role in RSs, one key challenge in enhancing RSs with LLMs lies in providing better collaborative filtering information through LLMs. In this paper, drawing inspiration from the in-context learning and chain of thought reasoning in LLMs, we propose the Large Language Models enhanced Collaborative Filtering (LLM-CF) framework, which distils the world knowledge and reasoning capabilities of LLMs into collaborative filtering. We also explored a concise and efficient instruction-tuning method, which improves the recommendation capabilities of LLMs while preserving their general functionalities (e.g., not decreasing on the LLM benchmark). Comprehensive experiments on three real-world datasets demonstrate that LLM-CF significantly enhances several backbone recommendation models and consistently outperforms competitive baselines, showcasing its effectiveness in distilling the world knowledge and reasoning capabilities of LLM into collaborative filtering.

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Forward citations

Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. LBR: Towards Mitigating Length Bias in Large Language Models for Recommendation

    cs.IR 2026-07 accept novelty 6.5 of 10

    LBR removes length bias in LLM recommenders via length-aware attention offsets and Trie-branching information-length normalization, improving accuracy and fairness with negligible cost.

  2. Towards Efficient Reasoning in LLM-Based Recommender Systems via Model Merging

    cs.IR 2026-08 conditional novelty 6.0 of 10

    REAM merges slow- and fast-thinking recommender models at the per-attention-head level, cutting reasoning length by up to 24.3% while preserving rating accuracy.

  3. Beyond Semantic Understanding: Preserving Collaborative Frequency Components in LLM-based Recommendation

    cs.CL 2025-08 conditional novelty 6.0 of 10

    FreLLM4Rec shows that LLMs attenuate low-frequency collaborative components of item embeddings and introduces graph and temporal low-pass filters that preserve them, achieving up to 8% NDCG@10 gains.

  4. Large Language Model Enhanced Recommender Systems: A Survey

    cs.IR 2024-12 unverdicted novelty 4.0 of 10

    A survey organizing LLM-enhanced recommender systems into knowledge, interaction, and model enhancement, and tracing a shift from explicit text to implicit embeddings and fine-tuned open-source LLMs.

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