Vehicle platooning technology is essential in achieving group consensus, on-road safety, and fuel-saving. Meanwhile, Vehicle-to-Infrastructure (V2I) communication significantly facilitates the development of connected vehicles. However, the coupled effects of the longitudinal vehicle's mobility, platoon control and V2I communication may result in a low reliable communication network between the platoon vehicle and the roadside unit, there is a tradeoff between the platoon control and communication reliability. In this article, we investigate a bi-objective joint optimization problem where the first objective is to maximize the success probability of data transmission (communication reliability) and the second objective function is to minimize the traffic oscillation flow. The vehicle's mobility state of the platoon vehicle affects the channel capacity and transmission performance. In this context, we deeply explore the relationship between control signals and resource scheduling and theoretically deduce a closed-form expression of the optimal communication reliability objective. Through this closed expression, we transform the bi-objective model into a single objective MPC model by using $\epsilon$-constraint method. We design an efficient algorithm for solving the joint optimization model and prove the convergence. To verify the effectiveness of the proposed method, we finally evaluate the spacing error, speed error, and resource scheduling of platooning vehicles through simulation experiments in two experimental scenarios. The results show that the proposed control-communication co-design can improve the platoon control performance while satisfying the high reliability of V2I communications.
Joint Optimization of Platoon Control and Resource Scheduling in Cooperative Vehicle-Infrastructure System
IEEE Transactions on Intelligent Vehicles ; 8 , 6 ; 3629-3646
2023-06-01
2277646 byte
Article (Journal)
Electronic Resource
English
VEHICLE PLATOON CONTROL WITH COMMUNICATION SCHEDULING
British Library Conference Proceedings | 2018
|Vehicle Platoon Control with Communication Scheduling
IEEE | 2018
|Arrangement and Control Method of Cooperative Vehicle Platoon
SAE Technical Papers | 2021
|Arrangement and Control Method of Cooperative Vehicle Platoon
British Library Conference Proceedings | 2021
|