Cooperative Trajectory Planning: Principles for Human-Machine System Design on Trajectory Level

Fuente: arXiv
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Main Authors: Schneider, Julian, Varga, Balint, Hohmann, Sören
Format: Preprint
Published: 2024
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author Schneider, Julian
Varga, Balint
Hohmann, Sören
author_facet Schneider, Julian
Varga, Balint
Hohmann, Sören
contents This paper explores cooperative trajectory planning approaches within the context of human-machine shared control. In shared control research, it is typically assumed that the human and the automation use the same reference trajectory to stabilize the coupled system. However, this assumption is often incorrect, as they usually follow different trajectories, causing control conflicts at the action level that have not been widely researched. To address this, it is logical to extend shared control concepts to include human-machine interaction at the trajectory-level before action execution, resulting in a unified reference trajectory for both human and automation. This paper begins with a literature overview on approaches of cooperative trajectory planning. It then presents an approach of finding a joint trajectory by modelling cooperative trajectory planning as an agreement process. A generally valid system structure is proposed for this purpose. Finally, it proposes concepts to implement cooperative trajectory planning as an agreement process.
format Preprint
id arxiv_https___arxiv_org_abs_2410_16938
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Cooperative Trajectory Planning: Principles for Human-Machine System Design on Trajectory Level
Schneider, Julian
Varga, Balint
Hohmann, Sören
Systems and Control
This paper explores cooperative trajectory planning approaches within the context of human-machine shared control. In shared control research, it is typically assumed that the human and the automation use the same reference trajectory to stabilize the coupled system. However, this assumption is often incorrect, as they usually follow different trajectories, causing control conflicts at the action level that have not been widely researched. To address this, it is logical to extend shared control concepts to include human-machine interaction at the trajectory-level before action execution, resulting in a unified reference trajectory for both human and automation. This paper begins with a literature overview on approaches of cooperative trajectory planning. It then presents an approach of finding a joint trajectory by modelling cooperative trajectory planning as an agreement process. A generally valid system structure is proposed for this purpose. Finally, it proposes concepts to implement cooperative trajectory planning as an agreement process.
title Cooperative Trajectory Planning: Principles for Human-Machine System Design on Trajectory Level
topic Systems and Control
url https://arxiv.org/abs/2410.16938