Title :
A mode switching control design for fast position servo systems with permanent magnet synchronous motor
Author :
Guo-yang Cheng ; Jin-gao Hu
Author_Institution :
Coll. of Electr. Eng. & Autom., Fuzhou Univ., Fuzhou, China
Abstract :
A mode switching control scheme is proposed to achieve fast set-point tracking in motor servo systems. The control scheme incorporates a composite nonlinear feedback (CNF) control law into the framework of proximate time-optimal servomechanisms (PTOS). The CNF control law consists of a linear feedback part for achieving fast response and a nonlinear feedback part for suppressing the overshoot, so as to improve the transient performance in short span positioning, while the PTOS control law is responsible for fast acceleration and deceleration when the tracking error is large. A parameterized MSC controller is designed and the closed-loop stability is analyzed theoretically. The control scheme was then applied to the position-velocity control loop in a permanent magnet synchronous motor servo system. Experimental test has been conducted using the TMS320F2812 DSP. The results verify that the servo system is capable of fast and smooth positioning on a wide range of target locations.
Keywords :
closed loop systems; control system synthesis; digital signal processing chips; feedback; linear systems; nonlinear control systems; permanent magnet motors; position control; servomotors; stability; synchronous motors; time optimal control; time-varying systems; velocity control; CNF control law; PTOS control law; TMS320F2812 DSP; closed-loop stability; composite nonlinear feedback control law; fast position servo systems; fast set-point tracking; linear feedback part; mode switching control design; nonlinear feedback part; parameterized MSC controller design; permanent magnet synchronous motor servo system; position-velocity control loop; proximate time-optimal servomechanism framework; Acceleration; Permanent magnet motors; Robustness; Servomotors; Switches; Target tracking; Disturbance; Mode switching control; Servo system; Time-optimal control (TOC); Transient performance;
Conference_Titel :
Control and Automation (ICCA), 2013 10th IEEE International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-4673-4707-5
DOI :
10.1109/ICCA.2013.6564924