English

From Large-scale Audio Tagging to Real-Time Explainable Emergency Vehicle Sirens Detection

Sound 2025-07-01 v1 Artificial Intelligence Audio and Speech Processing

Abstract

Accurate recognition of Emergency Vehicle (EV) sirens is critical for the integration of intelligent transportation systems, smart city monitoring systems, and autonomous driving technologies. Modern automatic solutions are limited by the lack of large scale, curated datasets and by the computational demands of state of the art sound event detection models. This work introduces E2PANNs (Efficient Emergency Pre trained Audio Neural Networks), a lightweight Convolutional Neural Network architecture derived from the PANNs framework, specifically optimized for binary EV siren detection. Leveraging our dedicated subset of AudioSet (AudioSet EV) we fine-tune and evaluate E2PANNs across multiple reference datasets and test its viability on embedded hardware. The experimental campaign includes ablation studies, cross-domain benchmarking, and real-time inference deployment on edge device. Interpretability analyses exploiting Guided Backpropagation and ScoreCAM algorithms provide insights into the model internal representations and validate its ability to capture distinct spectrotemporal patterns associated with different types of EV sirens. Real time performance is assessed through frame wise and event based detection metrics, as well as a detailed analysis of false positive activations. Results demonstrate that E2PANNs establish a new state of the art in this research domain, with high computational efficiency, and suitability for edge-based audio monitoring and safety-critical applications.

Keywords

Cite

@article{arxiv.2506.23437,
  title  = {From Large-scale Audio Tagging to Real-Time Explainable Emergency Vehicle Sirens Detection},
  author = {Stefano Giacomelli and Marco Giordano and Claudia Rinaldi and Fabio Graziosi},
  journal= {arXiv preprint arXiv:2506.23437},
  year   = {2025}
}

Comments

pre-print (submitted to the IEEE/ACM Transactions on Audio, Speech, and Language Processing)