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Improved YOLOv5 based on attention mechanism and FasterNet for foreign object detection on railway and airway tracks

Publisher: USS

Authors: Qi Zongqing, Computer Science, Beijing University of Technology, Beijing, China Ma Danqing, Computer Information Technology, Northern Arizona University, Flagstaff, AZ, U.S Xu Jingyu, Computer Information Technology, Northern Arizona University, Arizona, U.S Xiang Ao, Digital Media Technology, University of Electronic Science and Technology of China, Sichuan, China Qu Hedi, Computer Science, Shenzhen SmartChip Microelectronics Technology Co., Ltd., China

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Abstract:

In recent years, there have been frequent incidents of foreign objects intruding into railway and Airport runways. These objects can include pedestrians, vehicles, animals, and debris. This paper introduces an improved YOLOv5 architecture incorporating FasterNet and attention mechanisms to enhance the detection of foreign objects on railways and Airport runways. This study proposes a new dataset, AARFOD (Aero and Rail Foreign Object Detection), which combines two public datasets for detecting foreign objects in aviation and railway systems. The dataset aims to improve the recognition capabilities of foreign object targets. Experimental results on this large dataset have demonstrated significant performance improvements of the proposed model over the baseline YOLOv5 model, reducing computational requirements. improved YOLO model shows a significant improvement in precision by 1.2%, recall rate by 1.0%, and [email protected] by 0.6%, while [email protected] remained unchanged. The parameters were reduced by approximately 25.12%, and GFLOPs were reduced by about 10.63%. In the ablation experiment, it is found that the FasterNet module can significantly reduce the number of parameters of the model, and the reference of the attention mechanism can slow down the performance loss caused by lightweight.

 

Keywords: YOLOv5,FasterNet,NAM,foreign object detection

Published in: IEEE Transactions on Antennas and Propagation( Volume: 71, Issue: 4, April 2023)

Page(s): 2908 - 2921

Date of Publication: 2908 - 2921

DOI: 10.1109/TAP.2023.3240032

Publisher: UNITED SOCIETIES OF SCIENCE