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April 22, 2026Drones0 citationsOpen Access

SynthAirDrone: Synthetic Drone Detection Dataset for Airport-Runway Environments

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JGJiuxia GuoJCJinxi ChenTZTianhang Zhang

Key Points

  • The aim is to develop a synthetic dataset to improve UAV intrusion detection at airport runways due to data scarcity.
  • Created SynthAirDrone, a synthetic dataset with 6500 annotated images for UAV detection.
  • Employed an intelligent framework integrating scene-aware placement and quality assessment for data generation.
  • Utilized sky-region segmentation and several image processing techniques to enhance visual quality.
  • Models trained on SynthAirDrone showed effective transfer to real-world scenarios despite being synthetic.
  • Mixed training with limited real data outperformed solely synthetic training, indicating improved applicability in practical settings.
  • A quality threshold of τ=0.6 was found to optimize the balance between dataset diversity and fidelity.

Abstract

Illegal drone intrusion near airport runways poses a critical threat to civil aviation safety, creating an urgent need for runway-side vision systems that can detect intruding UAVs early enough for safety warning and collision-risk mitigation. However, the development of such detectors is severely hindered by the scarcity of annotated real-world data in this high-security scenario. To address this bottleneck, we present SynthAirDrone, the first high-fidelity synthetic dataset for UAV intrusion detection in airport runway environments, together with an intelligent data generation framework integrating scene-aware placement and multi-criteria quality assessment. The proposed method uses sky-region segmentation to guide physically plausible drone placement, and combines perspective-aware scaling, Poisson image editing, and a four-dimensional quality scoring system—covering sky overlap, lighting consistency, size plausibility, and edge continuity—to improve visual plausibility and semantic consistency. The resulting dataset comprises 6500 high-quality images, all annotated in YOLO-compatible format. Using the lightweight YOLOv11n model, we show that models trained solely on SynthAirDrone exhibit non-trivial cross-domain transfer to Anti-UAV, while mixed training with limited real data provides the strongest real-world performance under the present setting. Ablation studies further confirm that a quality threshold of τ=0.6 achieves the best trade-off between diversity and fidelity. Overall, this work delivers a reproducible and efficient synthetic data solution for UAV detector development in high-security, data-scarce airport-runway scenarios.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/69e8677e6e0dea528ddeb9e0https://doi.org/10.3390/drones10040306
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