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Cellular-V2X Communications for Platooning: Design and Evaluation.
Giovanni Nardini1, Antonio Virdis2, Claudia Campolo3
1Dipartimento di Ingegneria dell Informazione, University of Pisa, Largo Lucio Lazzarino 1, 56122 Pisa, Italy. g.nardini@ing.unipi.it.
This study explores dynamic scheduling for cellular vehicle-to-everything (C-V2X) platooning. The simultaneous mode reduces latency, enabling high-density autonomous vehicle platoons.
Area of Science:
- Intelligent Transportation Systems
- Wireless Communications
- Autonomous Driving
Background:
- Platooning enhances fuel efficiency and safety through synchronized autonomous vehicle movement.
- Existing platooning research primarily uses IEEE 802.11p, but cellular vehicle-to-everything (C-V2X) offers advanced capabilities.
- 3GPP-specified scheduled mode for C-V2X sidelink communication requires novel resource management strategies.
Purpose of the Study:
- To analyze the performance of dynamic scheduling for C-V2X platooning under 3GPP scheduled mode.
- To compare two dynamic scheduling implementations: sequential and simultaneous modes with spatial frequency reuse.
- To identify key design choices and C-V2X parameters impacting platooning performance.
Main Methods:
- System-level simulations were employed to evaluate platooning performance.
- Two dynamic scheduling approaches were investigated: sequential and simultaneous modes.
- Performance was analyzed based on reliability and latency under varying network loads.
Main Results:
- The simultaneous dynamic scheduling mode significantly reduces latency in vehicle controller update cycles.
- Both sequential and simultaneous modes were evaluated for feasibility and performance.
- Key C-V2X parameters influencing data exchange reliability and latency were identified.
Conclusions:
- The simultaneous mode is a viable and effective strategy for C-V2X platooning, particularly for high-density scenarios.
- Dynamic scheduling in C-V2X offers a promising alternative to traditional methods for platooning communication.
- Optimized C-V2X configurations are crucial for achieving reliable and low-latency platooning.
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