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FUSE: Fast Semi-Supervised Node Embedding Learning via Structural and Label-Aware Optimization

  • Sujan Chakraborty* (Erstautor/-in)
  • , Rahul Bordoloi*
  • , Anindya Sengupta*
  • , Olaf Wolkenhauer*
  • , Saptarshi Bej* (Letztautor/-in)
  • *Korrespondierende/r Autor/-in für diese Arbeit
  • Indian Institute of Science Education and Research, Vithura,Thiruvananthapuram
  • Universität Rostock
  • Texas A&M University
  • Stellenbosch Institute of Advanced Study

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

Abstract

Graph-based learning is a cornerstone for analyzing structured data, with node classification as a central task. However, in many real-world graphs, nodes lack informative feature vectors, leaving only neighborhood connectivity and class labels as available signals. In such cases, effective classification hinges on learning node embeddings that capture structural roles and topological context. We introduce a fast semi-supervised embedding framework that jointly optimizes three complementary objectives: (i) unsupervised structure preservation via scalable modularity approximation, (ii) supervised regularization to minimize intra-class variance among labeled nodes, and (iii) semi-supervised propagation that refines unlabeled nodes through random-walk-based label spreading with attention-weighted similarity. These components are unified into a single iterative optimization scheme, yielding high-quality node embeddings. On standard benchmarks, our method consistently achieves classification accuracy at par with or superior to state-of-the-art approaches, while requiring significantly less computational cost.

OriginalspracheEnglisch
Aufsatznummer182
FachzeitschriftMachine Learning
Jahrgang115
Ausgabenummer8
DOIs
PublikationsstatusVeröffentlicht - Aug. 2026

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