Improving Driver Satisfaction with a Driving Function Learning from Implicit Human Feedback -- a Test Group Study

Fuente: arXiv
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Hauptverfasser: Schwager, Robin, Anastasio, Andrea, Hartmann, Simon, Ronellenfitsch, Andreas, Grimm, Michael, Brühl, Tim, Sohn, Tin Stribor, Eberhardt, Tim Dieter, Hohmann, Sören
Format: Preprint
Veröffentlicht: 2026
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author Schwager, Robin
Anastasio, Andrea
Hartmann, Simon
Ronellenfitsch, Andreas
Grimm, Michael
Brühl, Tim
Sohn, Tin Stribor
Eberhardt, Tim Dieter
Hohmann, Sören
author_facet Schwager, Robin
Anastasio, Andrea
Hartmann, Simon
Ronellenfitsch, Andreas
Grimm, Michael
Brühl, Tim
Sohn, Tin Stribor
Eberhardt, Tim Dieter
Hohmann, Sören
contents During the use of advanced driver assistance systems, drivers frequently intervene into the active driving function and adjust the system's behavior to their personal wishes. These active driver-initiated takeovers contain feedback about deviations in the driving function's behavior from the drivers' personal preferences. This feedback should be utilized to optimize and personalize the driving function's behavior. In this work, the adjustment of the speed profile of a Predictive Longitudinal Driving Function (PLDF) on a pre-defined route is highlighted. An algorithm is introduced which iteratively adjusts the PLDF's speed profile by taking into account both the original speed profile of the PLDF and the driver demonstration. This approach allows for personalization in a traded control scenario during active use of the PLDF. The applicability of the proposed algorithm is tested in a driving simulator-based test group study with 43 participants. The study finds a significant increase in driver satisfaction and a significant reduction in the intervention frequency when using the proposed adaptive PLDF. Additionally, feedback by the participants was gathered to identify further optimization potentials of the proposed system.
format Preprint
id arxiv_https___arxiv_org_abs_2602_13733
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Improving Driver Satisfaction with a Driving Function Learning from Implicit Human Feedback -- a Test Group Study
Schwager, Robin
Anastasio, Andrea
Hartmann, Simon
Ronellenfitsch, Andreas
Grimm, Michael
Brühl, Tim
Sohn, Tin Stribor
Eberhardt, Tim Dieter
Hohmann, Sören
Robotics
During the use of advanced driver assistance systems, drivers frequently intervene into the active driving function and adjust the system's behavior to their personal wishes. These active driver-initiated takeovers contain feedback about deviations in the driving function's behavior from the drivers' personal preferences. This feedback should be utilized to optimize and personalize the driving function's behavior. In this work, the adjustment of the speed profile of a Predictive Longitudinal Driving Function (PLDF) on a pre-defined route is highlighted. An algorithm is introduced which iteratively adjusts the PLDF's speed profile by taking into account both the original speed profile of the PLDF and the driver demonstration. This approach allows for personalization in a traded control scenario during active use of the PLDF. The applicability of the proposed algorithm is tested in a driving simulator-based test group study with 43 participants. The study finds a significant increase in driver satisfaction and a significant reduction in the intervention frequency when using the proposed adaptive PLDF. Additionally, feedback by the participants was gathered to identify further optimization potentials of the proposed system.
title Improving Driver Satisfaction with a Driving Function Learning from Implicit Human Feedback -- a Test Group Study
topic Robotics
url https://arxiv.org/abs/2602.13733