DocumentCode
3121213
Title
Fuzzy PID controller design for artificial finger based SMA actuators
Author
Khodayari, Alireza ; Kheirikhah, Mohammad Mahdi ; Talari, Maryam
Author_Institution
Mech. Eng. Dept., Islamic Azad Univ., Tehran, Iran
fYear
2011
fDate
27-30 June 2011
Firstpage
727
Lastpage
732
Abstract
Shape Memory Alloy (SMA) wires are currently employed in robotics, as well as prosthetic limbs and medical equipment. Due to advantages such as reducing the size in the application, high power-to-weight ratio, elimination of complex transmission systems and noiseless actuation, and human machine interface, these materials are used as actuators in the prosthesis limb. Because of hysteresis property and nonlinear behavior of SMA, control of these actuators is very complicated. In this paper, the design of control algorithms has been discussed for SMA actuators in the artificial fingers with 3 DOF, which includes PID-fuzzy controller. Gains of controllers are set so that the current applied to SMA wires has minimum overshoot and output of system has minimal time to achieve stability. The simulation results compared with actual measured data show how well the controllers decrease the overshoot and time of stability of input signal to SMA wires.
Keywords
actuators; artificial limbs; control system synthesis; fuzzy control; medical control systems; shape memory effects; three-term control; SMA actuator; artificial finger; complex transmission system; fuzzy PID controller design; human machine interface; hysteresis property; noiseless actuation; nonlinear behavior; power-to-weight ratio; prosthesis limb; shape memory alloy wire; Actuators; Fingers; Joints; Mathematical model; Robot kinematics; Wires; Fuzzy and Fuzzy-PID controller; artificial hand; shape memory alloy;
fLanguage
English
Publisher
ieee
Conference_Titel
Fuzzy Systems (FUZZ), 2011 IEEE International Conference on
Conference_Location
Taipei
ISSN
1098-7584
Print_ISBN
978-1-4244-7315-1
Electronic_ISBN
1098-7584
Type
conf
DOI
10.1109/FUZZY.2011.6007542
Filename
6007542
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