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Concealed Weapon Detection Using Thermal Cameras

Juan D. Muñoz, Jesús Ruiz-Santaquiteria, Óscar Déniz, Gloria Bueno

2025Journal of Imaging11 citationsDOIOpen Access PDF

Abstract

In an era where security concerns are ever-increasing, the need for advanced technology to detect visible and concealed weapons has become critical. This paper introduces a novel two-stage method for concealed handgun detection, leveraging thermal imaging and deep learning, offering a potential real-world solution for law enforcement and surveillance applications. The approach first detects potential firearms at the frame level and subsequently verifies their association with a detected person, significantly reducing false positives and false negatives. Alarms are triggered only under specific conditions to ensure accurate and reliable detection, with precautionary alerts raised if no person is detected but a firearm is identified. Key contributions include a lightweight algorithm optimized for low-end embedded devices, making it suitable for wearable and mobile applications, and the creation of a tailored thermal dataset for controlled concealment scenarios. The system is implemented on a chest-worn Android smartphone with a miniature thermal camera, enabling hands-free operation. Experimental results validate the method's effectiveness, achieving an mAP@50-95 of 64.52% on our dataset, improving state-of-the-art methods. By reducing false negatives and improving reliability, this study offers a scalable, practical solution for security applications.

Topics & Concepts

Computer scienceFalse positive paradoxComputer securityAndroid (operating system)ScalabilityReliability (semiconductor)Key (lock)Wearable computerMobile deviceArtificial intelligenceDeep learningFalse positives and false negativesLaw enforcementWearable technologyReal-time computingEmbedded systemLawOperating systemPhysicsPower (physics)Quantum mechanicsDatabasePolitical scienceAnomaly Detection Techniques and ApplicationsAdvanced Optical Sensing TechnologiesAdversarial Robustness in Machine Learning
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