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Asynchronous Self-Triggered Stochastic Distributed MPC for Cooperative Vehicle Platooning over Vehicular Ad-Hoc Networks

Jicheng Chen, Henglai Wei, Hui Zhang, Yang Shi

2023IEEE Transactions on Vehicular Technology38 citationsDOI

Abstract

In this paper, an asynchronous stochastic self-triggered distributed MPC (DMPC) control scheme is proposed for vehicular platoon systems under coupled state constraints and additive stochastic disturbance. In considered platoon systems, each vehicle broadcasts its predicted state as beacon information to its neighbouring vehicles through the vehicular ad-hoc network (VANET). To reduce the communication burden in the VANET, each vehicle proactively determines the next sampling time instant by solving the stochastic self-triggered DMPC problem at the sampling time instant. The self-triggered problem is formulated by utilizing local vehicle states and asynchronous beacon information from its neighbours. Consequently, the proposed scheme reduces the communication load dramatically in the VANET while maintaining a satisfactory control performance compared to periodic time-triggered stochastic DMPC. To handle the state coupling between vehicles, e.g., for collision avoidance or communication connectivity purpose, probabilistic coupled state constraints are incorporated into the DMPC problem. Based on the information on stochastic disturbance, the probabilistic coupled state constraints are transformed into deterministic forms using the stochastic tube-based method. Theoretical analysis has shown that closed-loop platooning is quadratically stable at triggering time instants. Numerical examples illustrate the efficacy of the proposed control method in terms of data transmission reduction.

Topics & Concepts

PlatoonAsynchronous communicationVehicular ad hoc networkProbabilistic logicComputer scienceWireless ad hoc networkControl theory (sociology)Stochastic processDistributed computingComputer networkWirelessMathematicsControl (management)TelecommunicationsArtificial intelligenceStatisticsTraffic control and managementVehicular Ad Hoc Networks (VANETs)Autonomous Vehicle Technology and Safety