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Towards Using Active Learning Methods for Human-Seat Interactions To Generate Realistic Occupant Motion

Robotics 2024-10-29 v1 Dynamical Systems

Abstract

In the context of developing new vehicle concepts, especially autonomous vehicles with novel seating arrangements and occupant activities, predicting occupant motion can be a tool for ensuring safety and comfort. In this study, a data-driven surrogate contact model integrated into an optimal control framework to predict human occupant behavior during driving maneuvers is presented. High-fidelity finite element simulations are utilized to generate a dataset of interaction forces and moments for various human body configurations and velocities. To automate the generation of training data, an active learning approach is introduced, which iteratively queries the high-fidelity finite element simulation for an additional dataset. The feasibility and effectiveness of the proposed method are demonstrated through a case study of a head interaction with an automotive headrest, showing promising results in accurately replicating contact forces and moments while reducing manual effort.

Keywords

Cite

@article{arxiv.2409.17163,
  title  = {Towards Using Active Learning Methods for Human-Seat Interactions To Generate Realistic Occupant Motion},
  author = {Niklas Fahse and Monika Harant and Marius Obentheuer and Joachim Linn and Jörg Fehr},
  journal= {arXiv preprint arXiv:2409.17163},
  year   = {2024}
}

Comments

Submitted for publication in the Proceedings in Applied Mathematics and Mechanics

R2 v1 2026-06-28T18:57:01.581Z