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Published on: May 6, 2010
Measuring the higher-order homophily in a general social hypergraph
Yunping Wang1, Zhiheng Zhou1, Mingwei Li1
1School of Mathematics and Statistics, Shandong University at Weihai, Weihai, China.
Chaos (Woodbury, N.Y.)
|August 14, 2026
Summary
We introduce a new homophily measure for social networks with varied group sizes. This advances understanding of social dynamics in complex, real-world interactions beyond traditional models.
Area of Science:
- Social Network Analysis
- Network Science
- Computational Social Science
Background:
- Homophily, the tendency to interact with similar others, is crucial for social dynamics.
- Traditional homophily measures use k-uniform hypergraphs, limiting analysis to fixed group sizes (k≥2).
- Real-world social interactions often involve varying numbers of participants, necessitating new analytical tools.
Purpose of the Study:
- To propose a novel descriptive homophily measure for general social hypergraphs with non-uniform group sizes.
- To establish theoretical constraints for monotonic and majority homophily in two-class labeled networks.
- To provide a framework for analyzing homophily patterns in complex social structures.
Main Methods:
- Developed a new homophily measure applicable to general social hypergraphs.
- Defined and established constraints for monotonic and majority homophily.
- Conducted experiments on diverse datasets to validate the measure's effectiveness.
Main Results:
- Identified systematic deviations in hyperedge composition based on node class labels.
- Demonstrated the measure's ability to capture homophily patterns in non-uniform hypergraphs.
- Showcased differences compared to label-independent baselines.
Conclusions:
- The proposed measure effectively quantifies homophily in social hypergraphs with arbitrary group sizes.
- This work bridges the gap between theoretical homophily concepts and practical applications.
- Advances the understanding of social and structural dynamics in complex networks.
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