Title :
Intelligent IMC-PID control for ultrasonic motor
Author :
Mu, Shenglin ; Tanaka, Kanya ; Wakasa, Yuji ; Akashi, Takuya ; Nishimura, Yuki ; Oka, Masato
Author_Institution :
Grad. Sch. of Sci. & Eng., Yamaguchi Univ., Ube, Japan
Abstract :
Ultrasonic motor (USM) is an electronic motor which causes serious characteristic changes during operation and contains non-linearity caused by friction. For USM control application, proportional integral differential (PID) control is a widespread control method. But in practical process, setting three gains beforehand is not an easy work. On the other hand, the internal model control type PID (IMC-PID) which requires only one parameter setting beforehand, mainly used in process control, is more effective relatively. However, in USM control, there are limitations of control performance on conventional fixed-gain type IMC-PID control since USM´s characteristic changes and non-linearity caused by friction. So, in this paper we propose an improved method of variable gain type IMC-PID control combined with neural network (NN) named ldquointelligent IMC-PID for USMrdquo. In this proposed method, system identification method is adopted to overcome serious characteristic changes and neural network is used to compensate non-linearity. And the effectiveness of the proposed method has been confirmed by experiments.
Keywords :
intelligent control; neurocontrollers; process control; three-term control; ultrasonic motors; PID control; electronic motor; intelligent IMC-PID control; internal model control; neural network control; process control; proportional integral differential control; ultrasonic motor; Circuits; Electromagnetic fields; Friction; Gain; Intelligent control; Neural networks; Pi control; Proportional control; Servomechanisms; Torque; IMC-PID control; neural network; ultrasonic motor; variable gain;
Conference_Titel :
ICCAS-SICE, 2009
Conference_Location :
Fukuoka
Print_ISBN :
978-4-907764-34-0
Electronic_ISBN :
978-4-907764-33-3