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February 14, 2026Neural Computing and Applications0 citations

Fixed-point graph convolutional networks against adversarial attacks

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SKShakib KhanAHA. Ben HamzaAYAmr Youssef

Key Points

  • This research aims to develop a robust graph neural network model to counter adversarial attacks.
  • Introduced Fix-GCN to capture higher-order node neighborhood information.
  • Developed a spectral modulation filter to improve robustness against attacks.
  • Derived feature propagation rule using fixed-point iteration.
  • Demonstrated resilience against adversarial perturbations on benchmark graph datasets.

Abstract

Adversarial attacks present a significant risk to the integrity and performance of graph neural networks, particularly in tasks where graph structure and node features are vulnerable to manipulation. In this paper, we present a novel model, called fixed-point iterative graph convolutional network (Fix-GCN), which achieves robustness against adversarial perturbations by effectively capturing higher-order node neighborhood information in the graph without additional memory or computational complexity. Specifically, we introduce a versatile spectral modulation filter and derive the feature propagation rule of our model using fixed-point iteration. Unlike traditional defense mechanisms that rely on additional design elements to counteract attacks, the proposed graph filter provides a flexible-pass filtering approach, allowing it to selectively attenuate high-frequency components while preserving low-frequency structural information in the graph signal. By iteratively updating node representations, our model offers a flexible and efficient framework for preserving essential graph information while mitigating the impact of adversarial manipulation. We demonstrate the effectiveness of the proposed model through extensive experiments on various benchmark graph datasets, showcasing its resilience against adversarial attacks.

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Cite This Study

Khan et al. (2026) studied this question.

synapsesocial.com/papers/698fd276306598e8538deab0https://doi.org/10.1007/s00521-025-11752-y
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