2024/11/10 by Chen Chen, Jingya Qian, Chen, Chen +7
Engineering · #Advanced Numerical Analysis Techniques #Data Structures and Algorithms (cs.DS) #FOS: Computer and information sciences #Gear and Bearing Dynamics Analysis #Metal Forming Simulation Techniques
paper · pdf · doi:10.48550/arxiv.2411.06405
openalex publication_date 2024/11/10 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
The k-truss model is one of the most important models in cohesive subgraph analysis. The k-truss decomposition problem is to compute the trussness of each edge in a given graph, and has been extensively studied. However, the conventional k-truss model is difficult to characterize the fine-grained hierarchical structures in networks due to the neglect of high order information. To overcome the limitation, the higher-order truss model is proposed in the literature. However, the previous solutions only consider non-parallel scenarios. To fill the gap, in this paper, we conduct the first research to study the problem of parallel higher-order truss decomposition. Specifically, a parallel framework is first proposed. Moreover, several optimizations are further developed to accelerate the processing. Finally, experiments over 6 real-world networks are conducted to verify the performance of proposed methods.