Research on Privacy Protection Video Behavior Recognition Method Based on Improved SlowFast
Yunxue Shao, Min Li, Lingfeng Wang · Concurrency and Computation Practice and Experience · 2025
ABSTRACT Surveillance cameras in public areas have had a positive impact on reducing violence, but have also raised concerns about privacy invasion. With these factors in mind, the Bullying10K neuromorphic dataset utilizes dynamic vision sensor (DVS) cameras to detect instances of violent behavior while protecting individual privacy. This dataset collects a variety of complex, fast violent actions from real‐life scenarios as well as potentially occluded individuals. In this paper, for the characteristics of this dataset, the representative SlowFast neural network in behavior recognition is selected for research and improvement. First, a linear interpolation is applied to the Slow pathway to account for the absence of background influence in the Bullying10K dataset. Second, for the complex and fast action features and noise effects in the dataset, the interframe difference method is applied to the input of Fast pathway, which can effectively amplify the real dynamic signals and recognize the motion information in the video. Finally, it is difficult to prevent leakage of nonfacial information, such as gait data, against this dataset. The spatiotemporal attention fusion module (STAFM) is introduced, which not only better protects the privacy of nonfacial information but also improves the security and accuracy of the model when dealing with sensitive data, as well as enhances the generalization ability of the model. Experiments on Bullying10K show that the improved SlowFast exhibits significant advantages, including higher recognition accuracy, better protection of personal privacy, and better generalization capabilities. In addition, this paper is also validated on the UCF101 dataset, and the experimental results demonstrate the generalization of the improved method. The code of this paper is open‐sourced at: https://github.com/MinL0128/STAFM‐SlowFast .