Title :
Design of fuzzy-based magnetic suspension vibrator for electric wheelchair
Author :
Kuo-Ho Su ; Tun-Hua Chang ; Shun-Feng Su
Author_Institution :
Grad. Inst. of Digital Mechatron. Technol., Chinese Culture Univ., Taipei, Taiwan
Abstract :
A fuzzy-based magnetic suspension vibrator (FMSV) is designed and embedded into electrical wheelchair to promote its shock absorbing ability. Magnetic levitation system (MLS), using the electromagnetic force to float, rotate or move a suspended object, is a non-contact operation mode. This mode can effectively reduce the mechanical vibrations, friction and wearing loss caused by contact operation. Furthermore, it can also prolong the equipment´s life, reduce maintenance frequency and noise. However, the MLSs possess the characteristics of nonlinear and dynamic properties, so a robust adaptive fuzzy controller (AFC) for magnetic suspension vibrator is proposed in this study. With the help of magnetic suspension vibrator, the electric power wheelchair can steer in a bumpy road and provide more comfortable riding environment for disabled people or patients.
Keywords :
adaptive control; control system synthesis; electric vehicles; friction; fuzzy control; handicapped aids; magnetic fluids; magnetic forces; maintenance engineering; mechanical contact; robust control; shock absorbers; vibration control; wheelchairs; MLS; comfortable riding environment; contact operation; disabled people; dynamic properties; electric power wheelchair; electromagnetic force; equipment life; friction reduce; fuzzy-based magnetic suspension vibrator design; magnetic levitation system; maintenance frequency; mechanical vibrations, reduce; noise reduction; noncontact operation mode; nonlinear properties; robust adaptive fuzzy controller; shock absorbing ability; wearing loss; Frequency control; Irrigation; Legged locomotion; Noise; Robustness; Suspensions; Wheelchairs; Adaptive fuzzy controller; Electric wheelchair; Magnetic levitation system; Magnetic suspension vibrator; Tracking error;
Conference_Titel :
Networking, Sensing and Control (ICNSC), 2015 IEEE 12th International Conference on
Conference_Location :
Taipei
DOI :
10.1109/ICNSC.2015.7116103