V2X access technologies: Regulation, research, and remaining challenges

Z MacHardy, A Khan, K Obana… - … Surveys & Tutorials, 2018‏ - ieeexplore.ieee.org
As we edge closer to the broad implementation of intelligent transportation systems, the
need to extend the perceptual bounds of sensor-equipped vehicles beyond the individual …

URLLC-awared resource allocation for heterogeneous vehicular edge computing

Q Wu, W Wang, P Fan, Q Fan, J Wang… - IEEE Transactions on …, 2024‏ - ieeexplore.ieee.org
Vehicular edge computing (VEC) is a promising technology to support real-time vehicular
applications, where vehicles offload intensive computation tasks to the nearby VEC server …

Intelligent task offloading for heterogeneous V2X communications

K **ong, S Leng, C Huang, C Yuen… - IEEE Transactions on …, 2020‏ - ieeexplore.ieee.org
With the rapid development of autonomous driving technologies, it becomes difficult to
reconcile the conflict between ever-increasing demands for high process rate in the …

Resources Reservation Schemes for Time-Sensitive Networked Vehicular Applications with a View on ISAC

A Al-Khatib, S Ehsanfar, K Moessner… - IEEE Access, 2024‏ - ieeexplore.ieee.org
Edge computing resources are crucial for time-sensitive and safety-critical vehicular
(TSSCV) applications, such as autonomous and remote driving. These applications require …

Deep-learning-based intelligent intervehicle distance control for 6G-enabled cooperative autonomous driving

X Chen, S Leng, J He, L Zhou - IEEE Internet of Things Journal, 2020‏ - ieeexplore.ieee.org
Research on the sixth-generation cellular networks (6G) is gaining huge momentum to
achieve ubiquitous wireless connectivity. Connected autonomous vehicles (CAVs) is a …

Vehicular traffic management based on traffic engineering for vehicular ad hoc networks

DL Guidoni, G Maia, FSH Souza, LA Villas… - IEEE …, 2020‏ - ieeexplore.ieee.org
Urbanization causes many problems to human mobility, since people living in the cities tend
to increase the vehicular traffic flow. City road infrastructure does not increase faster than the …

The upper bounds of cellular vehicle-to-vehicle communication latency for platoon-based autonomous driving

X Chen, S Leng, J He, L Zhou… - IEEE Transactions on …, 2023‏ - ieeexplore.ieee.org
Cellular vehicle-to-vehicle (V2V) communications can support advanced cooperative driving
applications such as vehicle platooning and extended sensing. As the safety critical …

A stochastic network calculus (SNC)-based model for planning B5G uRLLC RAN slices

O Adamuz-Hinojosa, V Sciancalepore… - IEEE Transactions …, 2022‏ - ieeexplore.ieee.org
Radio Access Network (RAN) slicing involves several challenges. In particular, the Mobile
Network Operator (MNO) must ensure—before deploying each slice—that corresponding …

Communication and computing resource optimization for connected autonomous driving

K **ong, S Leng, X Chen, C Huang… - IEEE Transactions …, 2020‏ - ieeexplore.ieee.org
Transportation system is facing a sharp disruption since the Connected Autonomous
Vehicles (CAVs) can free people from driving and provide good driving experience with the …

Towards general Internet of Vehicles networking: Routing protocols survey

C Ksouri, I Jemili, M Mosbah… - … : Practice and Experience, 2022‏ - Wiley Online Library
The specific characteristics of vehicular ad hoc networks, such as high speed of nodes and
frequent topology changes, impose challenges for the routing process. In addition, the …