Zawawi, M.Z.F.B.M. and Elamvazuthi, I. and Aziz, A.B.A. and Daud, S.A. (2017) Comparison of PID and fuzzy logic controller for DC servo motor in the development of lower extremity exoskeleton for rehabilitation. In: UNSPECIFIED.
Full text not available from this repository.Abstract
Impairment of motor function of the lower extremities is a common result of stroke or spinal cord injury due to the harm caused to the spinal column. Rehabilitation using a lower extremity exoskeleton for therapy purposes has been examined to improve motor function of the affected limb. PID controller is the most widely recognized types of feedback controller in control strategy. The simplicity and functionality of the PID controller made it a common controller in various applications. Many researchers have adopted the PID as the controller for their system and the exoskeleton manipulator for rehabilitation devices is a part of it. However, the conventional PID controller is not suitable when controlling a real-time system that needs fast response time with less overshoot due to the trial-error process. Thus, the Fuzzy Logic controller can be a solution to control the lower extremity exoskeleton in a real-time system. This paper shows the simulation of PID tuning (Ziegler Nichols and Cohen Coon) and Fuzzy Logic Control for DC Servo Motor by using Matlab/Simulink. A performance comparison between the PID tuned and Fuzzy Controller for DC servo motor was presented. © 2017 IEEE.
Item Type: | Conference or Workshop Item (UNSPECIFIED) |
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Additional Information: | cited By 11; Conference of 3rd IEEE International Symposium in Robotics and Manufacturing Automation, ROMA 2017 ; Conference Date: 19 September 2017 Through 21 September 2017; Conference Code:134001 |
Uncontrolled Keywords: | Computer circuits; Controllers; DC motors; Electric control equipment; Exoskeleton (Robotics); Fuzzy logic; Haptic interfaces; Interactive computer systems; Manufacture; MATLAB; Proportional control systems; Real time systems; Robotics; Speed control; Three term control systems, Dc servomotors; Fuzzy logic controllers; Lower extremity; Lower extremity exoskeletons; Performance comparison; Rehabilitation devices; Simulation; Spinal cord injuries (SCI), Electric machine control |
Depositing User: | Mr Ahmad Suhairi UTP |
Date Deposited: | 09 Nov 2023 16:19 |
Last Modified: | 09 Nov 2023 16:19 |
URI: | https://khub.utp.edu.my/scholars/id/eprint/8041 |