Weighted Random Walk Sampling for Multi-Relational Recommendation
February 28, 2017 Β· Declared Dead Β· π User Modeling, Adaptation, and Personalization
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Authors
Fatemeh Vahedian, Robin Burke, Bamshad Mobasher
arXiv ID
1703.00034
Category
cs.IR: Information Retrieval
Cross-listed
cs.SI
Citations
16
Venue
User Modeling, Adaptation, and Personalization
Last Checked
4 months ago
Abstract
In the information overloaded web, personalized recommender systems are essential tools to help users find most relevant information. The most heavily-used recommendation frameworks assume user interactions that are characterized by a single relation. However, for many tasks, such as recommendation in social networks, user-item interactions must be modeled as a complex network of multiple relations, not only a single relation. Recently research on multi-relational factorization and hybrid recommender models has shown that using extended meta-paths to capture additional information about both users and items in the network can enhance the accuracy of recommendations in such networks. Most of this work is focused on unweighted heterogeneous networks, and to apply these techniques, weighted relations must be simplified into binary ones. However, information associated with weighted edges, such as user ratings, which may be crucial for recommendation, are lost in such binarization. In this paper, we explore a random walk sampling method in which the frequency of edge sampling is a function of edge weight, and apply this generate extended meta-paths in weighted heterogeneous networks. With this sampling technique, we demonstrate improved performance on multiple data sets both in terms of recommendation accuracy and model generation efficiency.
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