FDIG: A Fine-Grained Data Integration Approach for Group Recommendation
Qiwei Ye, Fan Yang, Jing Lu, Yu Tang, Linbo Qiao, Yunwei Zhao
Abstract
Effective group recommendation systems play a pivotal role in enriching the information consumption of users from different groups. Existing group recommendation approaches face challenges such as the sparsity of the rating matrix and low specificity between user clusters, leading to cold-start issue. In this paper, we propose a Fine-grained Data Integration approach for Group Recommendation (FDIG) that enables the fine-grained fusion of items in the same group without impacting other groups. FDIG reformulate the data integration task as a bi-level optimization problem, with an end-to-end loss function. To solve the problem efficiently, we propose an effective learning algorithm to obtain an admissible solution. Experimental results demonstrate that FDIG own the ability to accurately fuse items in group recommendation, which offers a practical solution to enhance group recommendation performance and user personalization.
BibTeX
@inproceedings{icassp2024_fdigafinegrained,
title = {FDIG: A Fine-Grained Data Integration Approach for Group Recommendation},
author = {Qiwei Ye and Fan Yang and Jing Lu and Yu Tang and Linbo Qiao and Yunwei Zhao},
booktitle = {ICASSP 2024},
year = {2024}
}