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Updated: Mar 21, 2026

Determining and Controlling External Power Output During Regular Handrim Wheelchair Propulsion
Published on: February 5, 2020
A Driving Behaviour Model of Electrical Wheelchair Users
S O Onyango1, Y Hamam1, K Djouani1
1F'SATI, Tshwane University of Technology, Private Bag Box X680, Staatsartillerie Road, Pretoria West, Pretoria 0001, South Africa.
This study models powered wheelchair user steering behavior to improve control systems. The developed model enhances assistive technology adaptability for better navigation and user experience.
Area of Science:
- Robotics
- Human-Computer Interaction
- Rehabilitation Engineering
Background:
- Powered wheelchairs offer mobility but can present steering and maneuvering challenges for some users.
- Effective navigation is crucial for powered wheelchair users' independence and quality of life.
- Existing assistive systems may lack adaptability to individual user steering patterns.
Purpose of the Study:
- To develop a user-specific steering behavior model for powered wheelchairs.
- To integrate this model into assistive control systems for enhanced maneuverability.
- To improve the adaptability and effectiveness of powered wheelchair control.
Main Methods:
- Utilized the improved Directed Potential Field (DPF) method for trajectory planning.
- Formulated a linear-parameter behavior model based on user steering data.
- Employed ordinary least squares for parameter estimation.
Main Results:
- Successfully modeled the steering behavior of powered wheelchair users.
- Achieved satisfactory regression analysis results during parameter identification.
- Demonstrated the feasibility of creating a simple, adaptable user behavior model.
Conclusions:
- User-specific modeling is essential for adaptive assistive control in powered wheelchairs.
- The proposed DPF-based approach provides a viable method for capturing steering behavior.
- This research contributes to developing more intuitive and effective powered wheelchair control systems.
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