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Delving into Instance-Dependent Label Noise in Graph Data: A Comprehensive Study and Benchmark (2506.12468v2)

Published 14 Jun 2025 in cs.LG, cs.AI, and stat.ML

Abstract: Graph Neural Networks (GNNs) have achieved state-of-the-art performance in node classification tasks but struggle with label noise in real-world data. Existing studies on graph learning with label noise commonly rely on class-dependent label noise, overlooking the complexities of instance-dependent noise and falling short of capturing real-world corruption patterns. We introduce BeGIN (Benchmarking for Graphs with Instance-dependent Noise), a new benchmark that provides realistic graph datasets with various noise types and comprehensively evaluates noise-handling strategies across GNN architectures, noisy label detection, and noise-robust learning. To simulate instance-dependent corruptions, BeGIN introduces algorithmic methods and LLM-based simulations. Our experiments reveal the challenges of instance-dependent noise, particularly LLM-based corruption, and underscore the importance of node-specific parameterization to enhance GNN robustness. By comprehensively evaluating noise-handling strategies, BeGIN provides insights into their effectiveness, efficiency, and key performance factors. We expect that BeGIN will serve as a valuable resource for advancing research on label noise in graphs and fostering the development of robust GNN training methods. The code is available at https://github.com/kimsu55/BeGIN.

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Authors (5)
  1. Suyeon Kim (5 papers)
  2. SeongKu Kang (37 papers)
  3. Dongwoo Kim (63 papers)
  4. Jungseul Ok (50 papers)
  5. Hwanjo Yu (57 papers)

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