College of Engineering, Electrical and Control, Arab Academy for Science, Technology and Maritime Transport, Alexandria, Egypt.
College of Engineering, Basic and Applied Science, Arab Academy for Science, Technology and Maritime Transport, Alexandria, Egypt.
PLoS One. 2024 Oct 25;19(10):e0310002. doi: 10.1371/journal.pone.0310002. eCollection 2024.
Egypt faces extreme traffic congestion in its cities, which results in long travel times, large lines of parked cars, and increased safety hazards. Our study suggests a multi-modal approach that combines critical infrastructure improvements with cutting-edge technologies to address the ubiquitous problem of traffic congestion. Assuring vehicles owners of their timely arrival, cutting down on fuel usage, and improving communication using deep learning approach and optimization algorithm within the potential of IoT enabled 5G framework are the main goals. The traffic management system incorporates detection cameras, Raspberry Pi 3 microcontroller, an Android application, cloud connectivity, and traditional traffic lights that are powered using PV modules and batteries to secure the traffic controllers operation in case of grid outage and assure service continuity. The model examines the difficulties associated with Internet of Things (IoT) communication, highlighting possible interference from device-to-device (D2D) devices and cellular user equipment. This all-encompassing strategy aims to reduce fuel consumption, increase road safety and improve traffic efficiency. The model predicts a significant increase in Egypt's urban mobility by utilizing the possibilities of IoT and 5G technologies, which would improve Egypt's towns' livability and efficiency. The goal of this paper is to modernize Egypt's traffic management system and bring it into compliance with global guidelines for intelligent transportation networks.
埃及城市面临着极端的交通拥堵问题,导致旅行时间延长、大量车辆停在路边,以及安全隐患增加。我们的研究提出了一种多模式方法,将关键基础设施改善与尖端技术相结合,以解决普遍存在的交通拥堵问题。通过物联网支持的 5G 框架中的深度学习方法和优化算法,确保车辆按时到达、减少燃料消耗并改善通信,是主要目标。交通管理系统结合了检测摄像头、Raspberry Pi 3 微控制器、Android 应用程序、云连接以及传统交通信号灯,交通信号灯使用光伏模块和电池供电,以确保在电网停电时交通控制器的运行,并确保服务的连续性。该模型研究了物联网 (IoT) 通信所面临的困难,强调了设备到设备 (D2D) 设备和蜂窝用户设备可能造成的干扰。这种全面的策略旨在减少燃料消耗、提高道路安全和提高交通效率。该模型利用物联网和 5G 技术的可能性,预测埃及城市交通的显著增长,从而提高埃及城镇的宜居性和效率。本文的目的是使埃及的交通管理系统现代化,使其符合智能交通网络的全球准则。