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April 12, 2026Guidance Navigation and Control0 citations

Adaptive Event-Triggered Vehicle Platoon Control Under Partial Channel Constraints

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ZLZibao LuYLYang LiBZBotao Zhang

Key Points

  • The aim is to develop a cooperative control strategy for vehicle platoons that minimizes communication via an adaptive event-triggered mechanism.
  • Developed a distributed control strategy using an adaptive event-triggered mechanism.
  • Modeled random channel loss between vehicles as a Markov process.
  • Used a hyperbolic secant function to set the event-triggered threshold dynamically.
  • Formulated the vehicle platoon system as a Markovian switching system with platoon errors as state variables.
  • Derived conditions for stability using Lyapunov stability theory.
  • Showed that the proposed method reduces the frequency of data exchange among vehicles.
  • Validated the effectiveness of the control strategy through simulations under channel-constrained scenarios.

Abstract

This paper addresses cooperative control and communication optimization for vehicle platoons with random channel loss between the leader and following vehicles. To reduce the communication burden of the system, a distributed control strategy based on an adaptive eventtriggered mechanism is proposed. Under a Leader-Predecessor-Following (LPF) communication topology, the random channel loss is modeled as a Markov process, which captures the practical scenario where only a subset of leader-to-follower communication links are available at any given time. A hyperbolic secant function is employed to dynamically adjust the event-triggered threshold. This strategy only triggers information transmission at necessary times, significantly reducing the frequency of data exchange. Subsequently, the vehicle platoon system is formulated as a Markovian switching system with platoon errors serving as state variables. Based on Lyapunov stability theory, sufficient conditions for mean-square asymptotic stability are derived, and a design method for the distributed controller is presented. Finally, the effectiveness of the proposed method under channel-constrained scenarios is validated through simulations.

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Cite This Study

Lu et al. (2026) studied this question.

synapsesocial.com/papers/69db37df4fe01fead37c5f2ahttps://doi.org/10.1142/s2737480726400030
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