Smart Mobility Digital Twin Based Automated Vehicle Navigation System: A Proof of Concept

被引:16
作者
Wang, Kui [1 ]
Li, Zongdian [1 ]
Nonomura, Kazuma [1 ]
Yu, Tao [1 ]
Sakaguchi, Kei [1 ]
Hashash, Omar [2 ]
Saad, Walid [2 ,3 ]
机构
[1] Tokyo Inst Technol, Sch Engn, Dept Elect & Elect Engn, Tokyo 1528550, Japan
[2] Virginia Tech, Bradley Dept Elect & Comp Engn, Arlington, VA 24061 USA
[3] Lebanese Amer Univ, Artificial Intelligence & Cyber Syst Res Ctr, Beirut, Lebanon
来源
IEEE TRANSACTIONS ON INTELLIGENT VEHICLES | 2024年 / 9卷 / 03期
关键词
Autonomous vehicles; Sensors; Cloud computing; Real-time systems; Navigation; Edge computing; Task analysis; Smart mobility digital twin; navigation system; vehicle-to-everything; cloud and edge computing; implementation; INTEGRATION; SIMULATION;
D O I
10.1109/TIV.2024.3368109
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Digital twins (DTs) have driven major advancements across various industrial domains over the past two decades. With the rapid advancements in autonomous driving and vehicle-to-everything (V2X) technologies, integrating DTs into vehicular platforms is anticipated to further revolutionize smart mobility systems. In this paper, a new smart mobility DT (SMDT) platform is proposed for the control of connected and automated vehicles (CAVs) over next-generation wireless networks. In particular, the proposed platform enables cloud services to leverage the abilities of DTs to promote the autonomous driving experience. To enhance traffic efficiency and road safety measures, a novel navigation system that exploits available DT information is designed. The SMDT platform and navigation system are implemented with state-of-the-art products, e.g., CAVs and roadside units (RSUs), and emerging technologies, e.g., cloud and cellular V2X (C-V2X). In addition, proof-of-concept (PoC) experiments are conducted to validate system performance. The performance of SMDT is evaluated from two standpoints: (i) the rewards of the proposed navigation system on traffic efficiency and safety and, (ii) the latency and reliability of the SMDT platform. Our experimental results using SUMO-based large-scale traffic simulations show that the proposed SMDT can reduce the average travel time and the blocking probability due to unexpected traffic incidents. Furthermore, the results record a peak overall latency for DT modeling and route planning services to be 155.15 ms and 810.59 ms, respectively, which validates that our proposed design aligns with the 3GPP requirements for emerging V2X use cases and fulfills the targets of the proposed design.
引用
收藏
页码:4348 / 4361
页数:14
相关论文
共 49 条
[1]  
3GPP, 2018, Technical Specification TS 28.627, V15.0.0
[2]   TraCI4Matlab: Enabling the Integration of the SUMO Road Traffic Simulator and Matlab® Through a Software Re-engineering Process [J].
Acosta, Andres F. ;
Espinosa, Jorge E. ;
Espinosa, Jairo .
MODELING MOBILITY WITH OPEN DATA, 2015, :155-170
[3]  
[Anonymous], 2024, Autoware Universe Documentation
[4]  
[Anonymous], 2024, Digital twin market size, share & trends analysis report by end -use (manufacturing, agriculture), by solution (component, process, system), by region, and segment forecasts
[5]  
[Anonymous], 2024, UC-win/Road simulator
[6]  
[Anonymous], 2024, Autoware Multi -object Tracker
[7]   Road Side Unit Deployment: A Density-Based Approach [J].
Barrachina, Javier ;
Garrido, Piedad ;
Fogue, Manuel ;
Martinez, Francisco J. ;
Cano, Juan-Carlos ;
Calafate, Carlos T. ;
Manzoni, Pietro .
IEEE INTELLIGENT TRANSPORTATION SYSTEMS MAGAZINE, 2013, 5 (03) :30-39
[8]   DORA: Dynamic Optimal Random Access for Vehicle-to-Roadside Communications [J].
Cheung, Man Hon ;
Hou, Fen ;
Wong, Vincent W. S. ;
Huang, Jianwei .
IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 2012, 30 (04) :792-803
[9]   Automatic Vehicle Tracking With Roadside LiDAR Data for the Connected-Vehicles System [J].
Cui, Yuepeng ;
Xu, Hao ;
Wu, Jianqing ;
Sun, Yuan ;
Zhao, Junxuan .
IEEE INTELLIGENT SYSTEMS, 2019, 34 (03) :44-51
[10]   C-ITS road-side unit deployment on highways with ITS road-side systems: A techno-economic approach [J].
Degrande, Thibault ;
Van den Eynde, Simon ;
Vannieuwenborg, Frederic ;
Colle, Didier ;
Verbrugge, Sofie .
IET INTELLIGENT TRANSPORT SYSTEMS, 2021, 15 (07) :863-874