Application of Sustainable Blockchain Technology in the Internet of Vehicles: Innovation in Traffic Sign Detection Systems
-
Published:2023-12-23
Issue:1
Volume:16
Page:171
-
ISSN:2071-1050
-
Container-title:Sustainability
-
language:en
-
Short-container-title:Sustainability
Author:
Liu Yanli1, Qian Qiang1, Zhang Heng1ORCID, Li Jingchao1, Zhong Yikai1, Xiong Neal N.23ORCID
Affiliation:
1. School of Electronic Information, Shanghai Dianji University, Shanghai 201306, China 2. Department of Mathematics and Computer Science, Sul Ross State University, Alpine, TX 79830, USA 3. School of Computer Science and Engineering, Hunan University of Science and Technology, Xiangtan 411201, China
Abstract
With the rapid development of the Internet of Vehicles (IoV), traffic sign detection plays an indispensable role in advancing autonomous driving and intelligent transportation. However, current road traffic sign detection technologies face challenges in terms of information privacy protection, model accuracy verification, and result sharing. To enhance system sustainability, this paper introduces blockchain technology. The decentralized, tamper-proof, and consensus-based features of blockchain ensure data privacy and security among vehicles while facilitating trustworthy validation of traffic sign detection algorithms and result sharing. Storing model training data on distributed nodes reduces the system computational resources, thereby lowering energy consumption and improving system stability, enhancing the sustainability of the model. This paper introduces an enhanced GGS-YOLO model, optimized based on YOLOv5. The model strengthens the feature extraction capability of the original network by introducing a coordinate attention mechanism and incorporates a BiFPN feature fusion network to enhance detection accuracy. Additionally, the newly designed GGS convolutional module not only improves accuracy but also makes the model more lightweight. The model achieves an enhanced detection accuracy rate of 85.6%, with a reduced parameter count of 0.34×107. In a bid to broaden its application scope, we integrate the model with blockchain technology for traffic sign detection in the IoV. This method demonstrates outstanding performance in traffic sign detection tasks within the IoV, confirming its feasibility and sustainability in practical applications.
Funder
National Natural Science Foundation of China Shanghai Science and Technology Program Shanghai Educational Science Research Project Humanities and Social Sciences of Ministry of Education Planning Fund, China
Subject
Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction
Reference58 articles.
1. Applications of blockchains in the Internet of Things: A comprehensive survey;Ali;IEEE Commun. Surv. Tutor.,2018 2. Bitcoin’s growing e-waste problem;Stoll;Resour. Conserv. Recycl.,2021 3. An incentive mechanism for sustainable blockchain storage;Liu;IEEE/ACM Trans. Netw.,2022 4. Machine vision based traffic sign detection methods: Review, analyses and perspectives;Liu;IEEE Access,2019 5. Yang, Y., and Wu, F. (2014, January 17–19). Real-time traffic sign detection via color probability model and integral channel features. Proceedings of the Pattern Recognition: 6th Chinese Conference, CCPR 2014, Changsha, China. Proceedings, Part II 6.
|
|