Communication Technologies for Intelligent Transportation Systems: From Railways to UAVs and Beyond
arXiv:2601.14106 · doi:10.26636/jtit.2025.COST-CA20120-VT2.2385
Abstract
This white paper aims to comprehensively analyze and consolidate the state of the art in communication technologies supporting modern and future Information and Communication Technology (ICT). Its primary objective is to establish a common understanding of how communication solutions enable automation, safety, and efficiency across multiple transport domains, including railways, road vehicles, aircraft, and unmanned aerial vehicles. The document seeks to identify key communication requirements and technological enablers necessary for interoperable and reliable ITS operation. It also assesses the limitations of current systems and proposes pathways for integrating emerging technologies such as 5G, Sixth Generation (6G), and Artificial Intelligence (AI)-driven network control. The white paper also intends to support harmonization between different transport modes through a unified framework for communication modeling, testing, and standardization. It highlights the importance of accurate channel modeling and empirical validation to design efficient, robust, and scalable systems. Another objective is to explore the use of reconfigurable intelligent surfaces, integrated sensing and communication, and digital twin concepts within ITS. The document emphasizes the role of spectrum management and standardization efforts in ensuring interoperability among diverse communication systems. Finally, the paper seeks to stimulate collaboration among academia, industry, and standardization bodies to advance the design of resilient and adaptive communication infrastructures for future transportation systems.
113 pages
References in corpus (17)
- The Road Towards 6G: A Comprehensive Survey
- Scalable Cell-Free Massive MIMO Systems
- Toward End-to-End, Full-Stack 6G Terahertz Networks
- Intelligent Transportation Systems Using External Infrastructure: A Literature Survey
- Tutorial on UAV: A Blue Sky View on Wireless Communication
- Wireless communication for safe UAVs: From Long-Range Deconfliction to short-range collision avoidance
- Survey of Spectrum Regulation for Intelligent Transportation Systems
- OTFS-superimposed PRACH-aided Localization for UAV Safety Applications
- Benefits of Advanced Air Mobility for Society and Environment: A Case Study of Ohio
- Multipath-Enhanced Device-Free Localization in Wideband Wireless Networks
- 3D Non-Stationary Channel Measurement and Analysis for MaMIMO-UAV Communications
- Scalable Cellular V2X Solutions: Large-Scale Deployment Challenges of Connected Vehicle Safety Networks
- Elevating the future of mobility: UAV-enabled Intelligent Transportation Systems
- Stochastic Geometry-based Modelling of Mobile UAV Relay Networks under Realistic Fading
- Measurement-Based Non-Stationary Markov Tapped Delay Line Channel Model for 5G-Railways
- Empirical Fading Model and Bayesian Calibration for Multipath-Enhanced Device-Free Localization
- Green Operations of SWIPT Networks: The Role of End-User Devices