TY - GEN
T1 - Robotic Individualized Driving Evaluation (RIDE)
T2 - 2025 International Conference on Rehabilitation Robotics, ICORR 2025
AU - Yang, Tim D.
AU - Rice, Laura
AU - Hutchinson, Seth
AU - Jan, Yih Kuen
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - Power wheelchair driving entails safety risks, including tips and collisions. Thus, driving assessments are important to safeguard both drivers and their surroundings. However, current driving assessments are deterministic, whereas driving itself is stochastic due to individual and environmental uncertainty. Moreover, disabilities magnify this uncertainty. In this study, a robotic wheelchair was used for a novel function: stochastic assessment of PWC driving. The Robotic Individualized Driving Evaluation (RIDE) is a stochastic assessment that contrasts with deterministic assessments by accounting for individual differences via assessment profiles. The robotic wheelchair acquired the information needed for the stochastic model, and a probabilistic risk score was formulated. The purpose of this preliminary study was to test the effect of assessment profiles within and between driving tasks. Within tasks, there were significant differences in RIDE risk between the profiles. Between tasks, there were significant differences in the new stochastic RIDE metrics but not in the conventional deterministic metrics. Results demonstrated potential for this novel use of robotic wheelchairs to support personalized assessment and training in power mobility rehabilitation.
AB - Power wheelchair driving entails safety risks, including tips and collisions. Thus, driving assessments are important to safeguard both drivers and their surroundings. However, current driving assessments are deterministic, whereas driving itself is stochastic due to individual and environmental uncertainty. Moreover, disabilities magnify this uncertainty. In this study, a robotic wheelchair was used for a novel function: stochastic assessment of PWC driving. The Robotic Individualized Driving Evaluation (RIDE) is a stochastic assessment that contrasts with deterministic assessments by accounting for individual differences via assessment profiles. The robotic wheelchair acquired the information needed for the stochastic model, and a probabilistic risk score was formulated. The purpose of this preliminary study was to test the effect of assessment profiles within and between driving tasks. Within tasks, there were significant differences in RIDE risk between the profiles. Between tasks, there were significant differences in the new stochastic RIDE metrics but not in the conventional deterministic metrics. Results demonstrated potential for this novel use of robotic wheelchairs to support personalized assessment and training in power mobility rehabilitation.
UR - https://www.scopus.com/pages/publications/105011136122
UR - https://www.scopus.com/pages/publications/105011136122#tab=citedBy
U2 - 10.1109/ICORR66766.2025.11063090
DO - 10.1109/ICORR66766.2025.11063090
M3 - Conference contribution
C2 - 40644054
AN - SCOPUS:105011136122
T3 - IEEE International Conference on Rehabilitation Robotics
SP - 1693
EP - 1698
BT - 2025 International Conference on Rehabilitation Robotics, ICORR 2025
PB - IEEE Computer Society
Y2 - 12 May 2025 through 16 May 2025
ER -