An intelligent network framework for driver distraction monitoring based on RES-SE-CNN

J Jichong Lei Z Zining Ni Z Zhiqiang Peng (College of Chemistry) H Hong Hu J Jun Hong X Xiaoyong Fang C Cannan Yi C Changan Ren M Muhammad Abdul Wasaye

Abstract

Abstract As the quantity of motor vehicles and drivers experiences a continuous upsurge, the road driving environment has grown progressively more complex. This complexity has led to a concomitant increase in the probability of traffic accidents. Ample research has demonstrated that distracted driving constitutes a primary human - related factor precipitating these accidents. Therefore, the real - time monitoring and issuance of warnings regarding distracted driving behaviors are of paramount significance. In this research, an intelligent driver state monitoring methodology founded on the RES - SE - CNN model architecture is proposed. When compared with three classical models, namely VGG19, DenseNet121, and ResNet50, the experimental outcomes indicate that the RES - SE - CNN model exhibits remarkable performance in the detection of driver distraction. Specifically, it attains a correct recognition rate of 97.28%. The RES - SE - CNN network architecture model is characterized by lower memory occupancy, rendering it more amenable to deployment on vehicle mobile terminals. This study validates the potential application of the intelligent driver distraction monitoring model, which is based on transfer learning, within the actual driving environment.

Article Details

Volume / Issue Vol. 15, Issue 1
Published February 26, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (9)

J

Jichong Lei

Z

Zining Ni

Z

Zhiqiang Peng

College of Chemistry

H

Hong Hu

J

Jun Hong

X

Xiaoyong Fang

C

Cannan Yi

C

Changan Ren

M

Muhammad Abdul Wasaye