Cooperative Adaptive Cruise Control in the Presence of Communication and Radar Stochastic Data Loss

Control of a platoon of connected vehicles with nonlinear longitudinal dynamics subject to failure in receiving communicated and radio data is addressed in this paper. We consider a scenario when due to malfunction of communication and radio devices, required data for cooperative adaptive cruise con...

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Published inIEEE transactions on intelligent transportation systems Vol. 25; no. 6; pp. 4964 - 4976
Main Authors Rezaee, Hamed, Zhang, Kangkang, Parisini, Thomas, Polycarpou, Marios M.
Format Journal Article
LanguageEnglish
Published New York IEEE 01.06.2024
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN1524-9050
1558-0016
DOI10.1109/TITS.2023.3335310

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Abstract Control of a platoon of connected vehicles with nonlinear longitudinal dynamics subject to failure in receiving communicated and radio data is addressed in this paper. We consider a scenario when due to malfunction of communication and radio devices, required data for cooperative adaptive cruise control may be stochastically unavailable. We develop a control scheme such that under certain conditions, the regulation of the intervehicle distances in desired values can be guaranteed. Specifically, we rigorously show that if the probability of receiving the required data for each vehicle is not zero, then under the proposed control strategy, the intervehicle distances almost surely converge to the desired values. Accurate performance of radars is a key assumption in the existing results in the literature on cooperative adaptive cruise control. Hence, the main contribution of this paper is that under the proposed control strategy, the robustness of the platoon against stochastic data loss in both communication network and vehicles radars is guaranteed. Simulation results verify the acceptable performance of the proposed control strategy.
AbstractList Control of a platoon of connected vehicles with nonlinear longitudinal dynamics subject to failure in receiving communicated and radio data is addressed in this paper. We consider a scenario when due to malfunction of communication and radio devices, required data for cooperative adaptive cruise control may be stochastically unavailable. We develop a control scheme such that under certain conditions, the regulation of the intervehicle distances in desired values can be guaranteed. Specifically, we rigorously show that if the probability of receiving the required data for each vehicle is not zero, then under the proposed control strategy, the intervehicle distances almost surely converge to the desired values. Accurate performance of radars is a key assumption in the existing results in the literature on cooperative adaptive cruise control. Hence, the main contribution of this paper is that under the proposed control strategy, the robustness of the platoon against stochastic data loss in both communication network and vehicles radars is guaranteed. Simulation results verify the acceptable performance of the proposed control strategy.
Author Rezaee, Hamed
Polycarpou, Marios M.
Parisini, Thomas
Zhang, Kangkang
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SubjectTerms Adaptive control
adaptive cruise control
Communication
Connected vehicles
Cooperative control
Cruise control
Data integrity
Data loss
Delays
Loss control
Nonlinear dynamics
Platooning
Radar
Radio
Receiving
Robust control
Robustness
Stability analysis
Stochastic processes
stochastic systems
vehicular platoons
Title Cooperative Adaptive Cruise Control in the Presence of Communication and Radar Stochastic Data Loss
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