A Hybrid Deep Learning and Visualization Framework for Pushing Behavior Detection in Pedestrian Dynamics

Author:

Alia AhmedORCID,Maree MohammedORCID,Chraibi MohcineORCID

Abstract

Crowded event entrances could threaten the comfort and safety of pedestrians, especially when some pedestrians push others or use gaps in crowds to gain faster access to an event. Studying and understanding pushing dynamics leads to designing and building more comfortable and safe entrances. Researchers—to understand pushing dynamics—observe and analyze recorded videos to manually identify when and where pushing behavior occurs. Despite the accuracy of the manual method, it can still be time-consuming, tedious, and hard to identify pushing behavior in some scenarios. In this article, we propose a hybrid deep learning and visualization framework that aims to assist researchers in automatically identifying pushing behavior in videos. The proposed framework comprises two main components: (i) Deep optical flow and wheel visualization; to generate motion information maps. (ii) A combination of an EfficientNet-B0-based classifier and a false reduction algorithm for detecting pushing behavior at the video patch level. In addition to the framework, we present a new patch-based approach to enlarge the data and alleviate the class imbalance problem in small-scale pushing behavior datasets. Experimental results (using real-world ground truth of pushing behavior videos) demonstrate that the proposed framework achieves an 86% accuracy rate. Moreover, the EfficientNet-B0-based classifier outperforms baseline CNN-based classifiers in terms of accuracy.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference52 articles.

1. Influence of Corridor Width and Motivation on Pedestrians in Front of Bottlenecks;Adrian,2020

2. Crowds in front of bottlenecks at entrances from the perspective of physics and social psychology

3. Pushing and Non-Pushing Forward Motion in Crowds: A Systematic Psychological Method for Rating Individual Behavior in Pedestrian Dynamics;Lügering,2022

4. When ‘push’ does not come to ‘shove’: Revisiting ‘faster is slower’ in collective egress of human crowds

5. Collective phenomena in crowds—Where pedestrian dynamics need social psychology

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