DocumentCode :
72310
Title :
Adaptive Fuzzy Logic Proportional-Integral-Derivative Control for a Miniature Autofocus Voice Coil Motor Actuator With Retaining Force
Author :
Hsing-Cheng Yu ; Tsan-Chen Chen ; Chien-Sheng Liu
Author_Institution :
Dept. of Syst. Eng. & Naval Archit., Nat. Taiwan Ocean Univ., Keelung, Taiwan
Volume :
50
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
1
Lastpage :
4
Abstract :
This paper presents a miniature autofocus (AF) voice coil motor (VCM) actuator with retaining force in a restricted space that can be applied in an optical AF apparatus. A position encoder consisting of a permanent magnet (PM) and a Hall-effect sensor is used to detect magnetic signals; the displacement of the AF VCM actuator can be obtained from the encoder, thus enabling closed-loop control. The proposed miniature AF VCM actuator consists of a high-permeability magnetoconductive plate and a PM on another side to generate a retaining force when the exciting current is switched off. Using a 3-D finite-element analysis simulation and the Maxwell stress tensor method, the electromagnetic Lorentz force within a movable displacement was determined to be ~16 mN. Blur caused by variable force and load disturbance was observed in images captured during AF operation. This adaptive fuzzy proportional-integral-derivative (PID) control approach compensates for the nonuniform friction, disturbance variation, and even load changes of the movable part of the AF VCM actuator that occur when a subject is photographed in various positions. The adaption mechanism reduced control effort, despite the variable force and load disturbance, and exhibited fast dynamic performance and minimal steady-state error.
Keywords :
actuators; adaptive control; closed loop systems; finite element analysis; force control; fuzzy control; sensors; three-term control; 3D finite-element analysis; Hall-effect sensor; Maxwell stress tensor method; PID control approach; PM; VCM actuator; adaptive fuzzy logic proportional-integral-derivative control; closed-loop control; electromagnetic Lorentz force; high-permeability magnetoconductive plate; load disturbance; magnetic signal detection; miniature autofocus voice coil motor actuator; movable displacement; permanent magnet; position encoder; retaining force; variable force; Actuators; Adaptation models; Adaptive optics; Coils; Force; Fuzzy logic; PD control; Adaptive control; fuzzy logic control; proportional-integral???derivative (PID) control; voice coil motor (VCM);
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2323423
Filename :
6971698
Link To Document :
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