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HYVINT: Intensity-Driven Hypergraph Generation with Variational Representations

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Hypergraphs provide a principled framework for modeling polyadic interactions, with applications in recommendation systems, social networks, and molecular modeling. Hypergraph generation remains challenging because incidence structures are discrete, sparse, and governed by heterogeneous higher-order interactions. Existing generators often rely on implicit latent spaces or continuous incidence decoders, which provide limited mechanistic interpretation of how node-hyperedge incidences arise. To address these limitations, we propose HYVINT, an intensity-driven hypergraph generative framework. Our key innovations are twofold: (i) we develop an intensity-driven incidence formation mechanism for hypergraphs that links latent interaction strength to binary incidence, and (ii) we derive a tractable lower-bound variational estimator for learning latent representations. We provide generation error bounds with asymptotic convergence rates and empirically show that HYVINT achieves strong fidelity while maintaining substantial novelty and diversity on synthetic and real-world hypergraphs.

Xinyi Hong, Shuntuo Xu, Zhou Yu• 2026

Related benchmarks

TaskDatasetResultRank
Hypergraph Parameter EstimationSynthetic Hypergraph K=8, rho in [0,1]
RMSE (Means)0.0238
54
Synthetic hypergraph generationSynthetic Hypergraph K=2, rho_i in [1, 2]
RMSE (Means)0.017
54
Hypergraph Generationcontact-primary-school (test)
RMSE (Mean)4.00e-4
18
Hypergraph GenerationNDC-substances
RMSE (Mean)1.00e-4
18
Hypergraph GenerationSynthetic Hypergraph N=200, M=400
RMSE Mean0.0263
12
Hypergraph GenerationSynthetic Hypergraph N=200, M=800
RMSE Mean0.0171
12
Hypergraph GenerationSynthetic Hypergraph N=400, M=200
RMSE Mean0.0348
12
Hypergraph GenerationSynthetic Hypergraph (N=400, M=400)
RMSE (Mean)0.0271
12
Hypergraph GenerationSynthetic Hypergraph N=400, M=800
RMSE (Means)0.0185
12
Hypergraph GenerationSynthetic Hypergraph N=800, M=200
RMSE Mean0.0364
12
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