Robust Cooperative Adaptive Cruise Control by Self-Adapting Uncertainty Compensator in Heterogeneous Vehicle Platooning

  • Yang, Jin Ho
  • Choi, Woo Young
  • Chung, Chung Choo
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초록

Precise longitudinal control in autonomous driving has been challenged by abrupt actuator dynamics changes. While Cooperative Adaptive Cruise Control (CACC) leverages vehicle-to-vehicle communication to improve upon Adaptive Cruise Control (ACC), it struggles with varying intrinsic parameter due to vehicle and environmental variation. Existing methods treat actuator behavior as static, relying on disturbance estimation, leading to jerky motion. This paper proposes a novel endogenous uncertainty compensator approach using self-adaptation feedforward controller with non-linearly estimated response parameter in real-time. CACC Simulation results showed up to 96 % spacing error reduction, and accurate actuator parameter estimation, demonstrating strong potential for improving stability and safety in CACC.

키워드

Autonomous drivingCooperative adaptive cruise controlEndogenous disturbanceUncertainty compensationNonlinear parameter estimationSelf adaptationActuatorsAdaptive control systemsAutonomous vehiclesComputer controlComputer control systemsCooperative communicationLongitudinal controlParameter estimationRobust controlUncertainty analysis
제목
Robust Cooperative Adaptive Cruise Control by Self-Adapting Uncertainty Compensator in Heterogeneous Vehicle Platooning
저자
Yang, Jin HoChoi, Woo YoungChung, Chung Choo
DOI
10.23919/ICCAS66577.2025.11301292
발행일
2025-12
유형
Conference paper
저널명
International Conference on Control, Automation and Systems
페이지
197 ~ 202