6G Enabled Advanced Transportation Systems

Fuente: arXiv
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Autores principales: Liu, Ruiqi, Hua, Meng, Guan, Ke, Wang, Xiping, Zhang, Leyi, Mao, Tianqi, Zhang, Di, Wu, Qingqing, Jamalipour, Abbas
Formato: Preprint
Publicado: 2023
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author Liu, Ruiqi
Hua, Meng
Guan, Ke
Wang, Xiping
Zhang, Leyi
Mao, Tianqi
Zhang, Di
Wu, Qingqing
Jamalipour, Abbas
author_facet Liu, Ruiqi
Hua, Meng
Guan, Ke
Wang, Xiping
Zhang, Leyi
Mao, Tianqi
Zhang, Di
Wu, Qingqing
Jamalipour, Abbas
contents With the emergence of communication services with stringent requirements such as autonomous driving or on-flight Internet, the sixth-generation (6G) wireless network is envisaged to become an enabling technology for future transportation systems. In this paper, two ways of interactions between 6G networks and transportation are extensively investigated. On one hand, the new usage scenarios and capabilities of 6G over existing cellular networks are firstly highlighted. Then, its potential in seamless and ubiquitous connectivity across the heterogeneous space-air-ground transportation systems is demonstrated, where railways, airplanes, high-altitude platforms and satellites are investigated. On the other hand, we reveal that the introduction of 6G guarantees a more intelligent, efficient and secure transportation system. Specifically, technical analysis on how 6G can empower future transportation is provided, based on the latest research and standardization progresses in localization, integrated sensing and communications, and security. The technical challenges and insights for a road ahead are also summarized for possible inspirations on 6G enabled advanced transportation.
format Preprint
id arxiv_https___arxiv_org_abs_2305_15184
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle 6G Enabled Advanced Transportation Systems
Liu, Ruiqi
Hua, Meng
Guan, Ke
Wang, Xiping
Zhang, Leyi
Mao, Tianqi
Zhang, Di
Wu, Qingqing
Jamalipour, Abbas
Information Theory
Networking and Internet Architecture
Systems and Control
Signal Processing
With the emergence of communication services with stringent requirements such as autonomous driving or on-flight Internet, the sixth-generation (6G) wireless network is envisaged to become an enabling technology for future transportation systems. In this paper, two ways of interactions between 6G networks and transportation are extensively investigated. On one hand, the new usage scenarios and capabilities of 6G over existing cellular networks are firstly highlighted. Then, its potential in seamless and ubiquitous connectivity across the heterogeneous space-air-ground transportation systems is demonstrated, where railways, airplanes, high-altitude platforms and satellites are investigated. On the other hand, we reveal that the introduction of 6G guarantees a more intelligent, efficient and secure transportation system. Specifically, technical analysis on how 6G can empower future transportation is provided, based on the latest research and standardization progresses in localization, integrated sensing and communications, and security. The technical challenges and insights for a road ahead are also summarized for possible inspirations on 6G enabled advanced transportation.
title 6G Enabled Advanced Transportation Systems
topic Information Theory
Networking and Internet Architecture
Systems and Control
Signal Processing
url https://arxiv.org/abs/2305.15184