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Denoised Self-Augmented Learning for Social Recommendation

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arxiv 2305.12685 v2 pith:44BJELYB submitted 2023-05-22 cs.IR

classification cs.IR
keywords sociallearningrecommendationdenoisedinformationinteractionmodelmodeling
verification ladder T0 review T1 audit T2 compute T3 formal
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Social recommendation is gaining increasing attention in various online applications, including e-commerce and online streaming, where social information is leveraged to improve user-item interaction modeling. Recently, Self-Supervised Learning (SSL) has proven to be remarkably effective in addressing data sparsity through augmented learning tasks. Inspired by this, researchers have attempted to incorporate SSL into social recommendation by supplementing the primary supervised task with social-aware self-supervised signals. However, social information can be unavoidably noisy in characterizing user preferences due to the ubiquitous presence of interest-irrelevant social connections, such as colleagues or classmates who do not share many common interests. To address this challenge, we propose a novel social recommender called the Denoised Self-Augmented Learning paradigm (DSL). Our model not only preserves helpful social relations to enhance user-item interaction modeling but also enables personalized cross-view knowledge transfer through adaptive semantic alignment in embedding space. Our experimental results on various recommendation benchmarks confirm the superiority of our DSL over state-of-the-art methods. We release our model implementation at: https://github.com/HKUDS/DSL.

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Cited by 2 Pith papers

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

  1. Collaborative Filtering Meets Spectrum Shift: Connecting User-Item Interaction with Graph-Structured Side Information

    cs.IR 2025-02 conditional novelty 5.0 of 10

    Spectrum Shift Correction applies an affine transform to the augmented adjacency matrix to restore the [-1,1] spectral range assumed by LightGCN and JGCF, improving social and multimodal recommendation.

  2. Shapley Value-driven Data Pruning for Recommender Systems

    cs.IR 2025-05 reject novelty 4.0 of 10

    SVV prunes recommender training interactions by their estimated Shapley value contribution to autoencoder loss reduction, reporting modest accuracy gains on four datasets but resting on a faulty value-function derivation.

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