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Optimal motion control for collision avoidance at Left Turn Across Path/Opposite Direction intersection scenarios using electric propulsion
Authors:Adithya Arikere  Derong Yang  Matthijs Klomp
Institution:1. American Axle &2. Manufacturing, Inc., Trollh?ttan Technical Center, Trollh?ttan, Sweden;3. Chalmers University of Technology, Mechanics and Maritime Sciences, Gothenburg, Sweden;4. Volvo Car Corporation, Vehicle Motion &5. Control, Gothenburg, Sweden;6. Chalmers University of Technology, Mechanics and Maritime Sciences, Gothenburg, Sweden;7. Volvo Car Corporation, Vehicle Dynamics CAE, Gothenburg, Sweden
Abstract:Collision avoidance at intersections involving a host vehicle turning left across the path of an oncoming vehicle (Left Turn Across Path/Opposite Direction) have been studied in the past, but mostly using simplified interventions and rarely considering the possibility of crossing the intersection ahead of a bullet vehicle. Such a scenario where the driver preference is to avoid a collision by crossing the intersection ahead of a bullet vehicle is considered in this work. The optimal vehicle motion for collision avoidance in this scenario is determined analytically using a particle model within an optimal control framework. The optimal manoeuvres are then verified through numerical optimisations using a two-track vehicle model, where it was seen that the wheel forces followed the analytical global force angle result independently of the other wheels. A Modified Hamiltonian Algorithm controller for collision avoidance that uses the analytical optimal control solution is then implemented and tested in CarMaker simulations using a validated Volvo XC90 vehicle model. Simulation results showed that collision risk can be significantly reduced in this scenario using the proposed controller, and that more benefit can be expected in scenarios that require larger speed changes.
Keywords:Collision avoidance  integrated vehicle motion control  intersection accidents  driver assistance systems  optimal control  LTAP/OD
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