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Centralized Model-Predictive Control with Human-Driver Interaction for Platooning

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arxiv 2205.09259 v5 pith:G2E26ZPL submitted 2022-05-19 cs.MA cs.SYeess.SY

Centralized Model-Predictive Control with Human-Driver Interaction for Platooning

classification cs.MA cs.SYeess.SY
keywords platooncontrolcontrollerdesignvehiclevelocitycentralizedconstraints
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Cooperative adaptive cruise control presents an opportunity to improve road transportation through increase in road capacity and reduction in energy use and accidents. Clever design of control algorithms and communication systems is required to ensure that the vehicle platoon is stable and meets desired safety requirements. In this paper, we propose a centralized model predictive controller for a heterogeneous platoon of vehicles to reach a desired platoon velocity and individual inter-vehicle distances with driver-selected headway time. As a novel concept, we allow for interruption from a human driver in the platoon that temporarily takes control of their vehicle with the assumption that the driver will, at minimum, obey legal velocity limits and the physical performance constraints of their vehicle. The finite horizon cost function of our proposed platoon controller is inspired from the infinite horizon design. To the best of our knowledge, this is the first platoon controller that integrates human-driven vehicles. We illustrate the performance of our proposed design with a numerical study, demonstrating that the safety distance, velocity, and actuation constraints are obeyed. Additionally, in simulation we illustrate a key property of string stability where the impact of a disturbance is reduced through the platoon.

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