6G for intelligent transportation systems: standards, technologies, and challenges

IF 1.7 4区 计算机科学 Q3 TELECOMMUNICATIONS
Amitkumar V. Jha, Bhargav Appasani, Mohammad S. Khan, Sherali Zeadally, Iyad Katib
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Abstract

The advent of the sixth-generation (6G) wireless communication technology brings forth immense opportunities for enhancing Intelligent Transportation Systems (ITS). We investigate the potential of 6G in revolutionizing transportation systems by analyzing the standards, technologies, and challenges associated with its implementation. Building upon the advancements of 5G, 6G introduces unprecedented capabilities, including ultra-high data rates, ultra-low latency, massive connectivity, and intelligent network orchestration. Leveraging these capabilities, 6G can facilitate seamless connectivity among vehicles, infrastructure, and pedestrians, enabling novel applications such as autonomous driving, smart traffic management, and cooperative collision avoidance. However, realizing the full potential of 6G for ITS entails addressing several challenges, including spectrum allocation, network security, resource management, and interoperability with existing infrastructures. We present a comprehensive overview of the latest developments in 6G standards and technologies, including mmWave communications, terahertz spectrum, visible light communication, Artificial Intelligence, and edge computing, emphasizing their relevance to ITS. We also describe these technologies in the context of ITS. Furthermore, we explore the potential benefits and impacts of 6G on transportation systems, highlighting the opportunities for improved safety, efficiency, and sustainability. Finally, we conclude by discussing the key challenges and research directions that must be addressed to effectively deploy 6G for ITS, thereby paving the way for the next generation of intelligent and connected transportation systems.

Abstract Image

用于智能交通系统的 6G:标准、技术和挑战
第六代(6G)无线通信技术的出现为增强智能交通系统(ITS)带来了巨大的机遇。我们通过分析与 6G 实施相关的标准、技术和挑战,研究 6G 在彻底改变交通系统方面的潜力。在 5G 技术进步的基础上,6G 引入了前所未有的功能,包括超高数据传输速率、超低延迟、海量连接和智能网络协调。利用这些功能,6G 可以促进车辆、基础设施和行人之间的无缝连接,实现自动驾驶、智能交通管理和协同避免碰撞等新型应用。然而,要充分发挥 6G 在智能交通系统中的潜力,必须解决几个难题,包括频谱分配、网络安全、资源管理以及与现有基础设施的互操作性。我们全面概述了 6G 标准和技术的最新发展,包括毫米波通信、太赫兹频谱、可见光通信、人工智能和边缘计算,并强调了它们与智能交通系统的相关性。我们还介绍了这些技术在智能交通系统中的应用。此外,我们还探讨了 6G 对交通系统的潜在好处和影响,强调了提高安全性、效率和可持续性的机会。最后,我们讨论了为智能交通系统有效部署 6G 必须应对的关键挑战和研究方向,从而为下一代智能互联交通系统铺平道路。
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来源期刊
Telecommunication Systems
Telecommunication Systems 工程技术-电信学
CiteScore
5.40
自引率
8.00%
发文量
105
审稿时长
6.0 months
期刊介绍: Telecommunication Systems is a journal covering all aspects of modeling, analysis, design and management of telecommunication systems. The journal publishes high quality articles dealing with the use of analytic and quantitative tools for the modeling, analysis, design and management of telecommunication systems covering: Performance Evaluation of Wide Area and Local Networks; Network Interconnection; Wire, wireless, Adhoc, mobile networks; Impact of New Services (economic and organizational impact); Fiberoptics and photonic switching; DSL, ADSL, cable TV and their impact; Design and Analysis Issues in Metropolitan Area Networks; Networking Protocols; Dynamics and Capacity Expansion of Telecommunication Systems; Multimedia Based Systems, Their Design Configuration and Impact; Configuration of Distributed Systems; Pricing for Networking and Telecommunication Services; Performance Analysis of Local Area Networks; Distributed Group Decision Support Systems; Configuring Telecommunication Systems with Reliability and Availability; Cost Benefit Analysis and Economic Impact of Telecommunication Systems; Standardization and Regulatory Issues; Security, Privacy and Encryption in Telecommunication Systems; Cellular, Mobile and Satellite Based Systems.
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