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March 15, 2026Aerospace0 citationsOpen Access

Real-Time Anomaly Detection for Civil Aviation VHF Communications Using Learnable Kernels and Conditional GANs

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JZJunyi ZhaiHSH. K. SunZLZhengqiang Li

Key Points

  • The aim is to develop a real-time detection system for anomalies in civil aviation VHF communications.
  • Utilized a learnable kernel projection for feature extraction.
  • Employed a differentiable relevance–redundancy objective for refining features.
  • Implemented conditional temporal generation to augment anomalies.
  • Used a CNN-LSTM model for streaming inference.
  • Conducted evaluations with operational data only.
  • Achieved an F1-score of 0.947.
  • Attained a ROC-AUC of 0.972.
  • Reached a PR-AUC of 0.968.
  • Average inference latency was 34.7 ms.

Abstract

Civil aviation VHF communication is safety-critical, yet operational links are routinely disturbed by atmospheric effects, aging hardware, and electromagnetic interference. The resulting anomalies are typically weak, intermittent, and extremely rare, which makes real-time detection difficult under strong temporal dependence and severe class imbalance. We propose an end-to-end framework that couples (i) a learnable kernel projection for adaptive nonlinear feature extraction, (ii) a differentiable relevance–redundancy objective for feature refinement, and (iii) conditional temporal generation to augment minority anomaly patterns. A lightweight CNN–LSTM head is used for streaming inference. Training uses a mixture of operational anomalies and simulated degradation scenarios, while evaluation is conducted using operational data only. Experiments on 1.2 million VHF frames collected from real flight operations and ground station monitoring achieve an F1-score of 0.947, ROC-AUC of 0.972, and PR-AUC of 0.968, with an average inference latency of 34.7 ms.

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Cite This Study

Zhai et al. (2026) studied this question.

synapsesocial.com/papers/69b64d48b42794e3e660e1fehttps://doi.org/10.3390/aerospace13030270
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