Efficient Core Maintenance in Large Bipartite Graphs
Wensheng Luo, Qiaoyuan Yang, Yixiang Fang, Xu Zhou
Abstract
As an important cohesive subgraph model in bipartite graphs, the (α, β)-core (a.k.a. bi-core) has found a wide spectrum of real-world applications, such as product recommendation, fraudster detection, and community search. In these applications, the bipartite graphs are often large and dynamic, where vertices and edges are inserted and deleted frequently, so it is costly to recompute (α, β)-cores from scratch when the graph has changed. Recently, a few works have attempted to study how to maintain (α, β)-cores in the dynamic bipartite graph, but their performance is still far from perfect, due to the huge size of graphs and their frequent changes. To alleviate this issue, in this paper we present efficient (α, β)-core maintenance algorithms over bipartite graphs. We first introduce a novel concept, called bi-core numbers, for the vertices of bipartite graphs. Based on this concept, we theoretically analyze the effect of inserting and deleting edges on the changes of vertices' bi-core numbers, which can be further used to narrow down the scope of the updates, thereby reducing the computational redundancy. We then propose efficient (α, β)-core maintenance algorithms for handling the edge insertion and edge deletion respectively, by exploiting the above theoretical analysis results. Finally, extensive experimental evaluations are performed on both real and synthetic datasets, and the results show that our proposed algorithms are up to two orders of magnitude faster than the state-of-the-art approaches.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 659c912b-b3e5-47e9-b8b2-e72ac10cf8f5Cited by top-tier papers5
- Efficient Index for Temporal Core Queries over Bipartite GraphsAnxin Tian, Alexander Zhou, Yue Wang, Xun Jian et al.VLDB 2024 · 8 citations
- Efficient Parallel D-core Decomposition at ScaleWensheng Luo, Yixiang Fang, Chunxu Lin, Yingli ZhouVLDB 2024 · 7 citations
- Density Decomposition of Bipartite GraphsYalong Zhang, Rong-Hua Li, Qi Zhang, Hongchao Qin et al.SIGMOD 2025 · 6 citations
- Efficient 푘-Clique Densest Subgraph Discovery: Towards Bridging Practice and TheoryYingli Zhou, Qingshuo Guo, Yixiang FangVLDB 2025 · 2 citations
- PACS: Privacy-Preserving Attribute-Driven Community Search over Attributed GraphsFangyuan Sun, Yaxi Yang, Jia Yu, Jianying ZhouNDSS 2026 · 1 citation
Related papers
- Order-based Algorithms for Efficient Core Maintenance in Large Bipartite GraphsQiaoyuan Yang, Wensheng Luo, Yixiang Fang, Yuanyuan ZengSIGMOD 2026
- Discovering Hierarchy of Bipartite Graphs with Cohesive SubgraphsKai Wang, Wenjie Zhang, Xuemin Lin, Ying Zhang et al.ICDE 2022 · 14 citations
- A Unified Framework for Dense Subgraph Maintenance over Dynamic Bipartite GraphsZitan Sun, Zihan Jia, Hong Cheng, Xin Huang et al.SIGMOD 2026
- Distributed (α, β)-Core Decomposition over Bipartite GraphsQing Liu, Xuankun Liao, Xin Huang, Jianliang Xu et al.ICDE 2023 · 15 citations
- Querying Historical Cohesive Subgraphs Over Temporal Bipartite GraphsShunyang Li, Kai Wang, Xuemin Lin, Wenjie Zhang et al.ICDE 2024 · 7 citations
