Papers › Hyperbolic Disk Embeddings for Directed Acyclic Graphs

Hyperbolic Disk Embeddings for Directed Acyclic Graphs

12 Feb 2019arXiv:1902.04335archive 2025-07-28

Ryota Suzuki, Ryusuke Takahama, Shun Onoda

Obtaining continuous representations of structural data such as directed acyclic graphs (DAGs) has gained attention in machine learning and artificial intelligence. However, embedding complex DAGs in which both ancestors and descendants of nodes are exponentially increasing is difficult. Tackling in this problem, we develop Disk Embeddings, which is a framework for embedding DAGs into quasi-metric spaces. Existing state-of-the-art methods, Order Embeddings and Hyperbolic Entailment Cones, are instances of Disk Embedding in Euclidean space and spheres respectively. Furthermore, we propose a novel method Hyperbolic Disk Embeddings to handle exponential growth of relations. The results of our experiments show that our Disk Embedding models outperform existing methods especially in complex DAGs other than trees.

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create_all_data lapras-inc/disk-embedding/split_wordnet_data.py official repository unverified Apache-2.0 (permissive) · 5721f63b9cb5fe59 · report
get_loss_function lapras-inc/disk-embedding/models/loss_function.py official repository unverified Apache-2.0 (permissive) · c8a39f8e99092d49 · report
get_metric_space lapras-inc/disk-embedding/models/metric_space.py official repository unverified Apache-2.0 (permissive) · df466e275c4fd7f9 · report
pretty_print_eval_map lapras-inc/disk-embedding/evaluations.py official repository unverified Apache-2.0 (permissive) · 5e562c9bd6ffdfc2 · report
pretty_print_eval_map_rec lapras-inc/disk-embedding/evaluations.py official repository unverified Apache-2.0 (permissive) · e237df0c53849b63 · report

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