DocumentCode :
60447
Title :
Efficient Visual Feedback Method to Control a Three-Dimensional Overhead Crane
Author :
Lun-Hui Lee ; Chung-Hao Huang ; Sung-Chih Ku ; Zhi-Heng Yang ; Cheng-Yuan Chang
Author_Institution :
Inst. of Nucl. Energy Res., Taoyuan, Taiwan
Volume :
61
Issue :
8
fYear :
2014
fDate :
Aug. 2014
Firstpage :
4073
Lastpage :
4083
Abstract :
This paper presents an efficient method to capture the dynamic movement of a three-dimensional (3-D) overhead crane, enabling it to be controlled by visual feedback in real time with two cheap handy cameras. Two tracking areas and one positioning block in each frame are used to search image features and determine the useful vision information. The depth information of 3-D crane system in images can be also obtained by a tag on the dynamic plant. The presented visual tracking method involves comparison of the lightest or darkest points in the tracking or positioning area of a dynamic object and then computes the necessary trolley position and load swing in 3-D space. Upon tracking, the sensing data are sent to an adaptive fuzzy sliding-mode controller (AFSMC) to derive control power for the crane system. Accordingly, the merits of this AFSMC approach, including robustness of the sliding-mode control and the model-free property of the fuzzy logic for the 3-D crane system, are confirmed. Experimental results verify the improvement of the proposed methodology.
Keywords :
adaptive control; cameras; computer vision; control engineering computing; cranes; feedback; fuzzy control; motion control; trolleys; variable structure systems; 3D crane system; 3D overhead crane; AFSMC approach; adaptive fuzzy sliding-mode controller; cheap handy cameras; control power; depth information; dynamic plant; fuzzy logic; load swing; model-free property; positioning area tracking; positioning block; search image features; sensing data; three-dimensional overhead crane control; tracking areas; trolley position; vision information; visual feedback method; Cranes; Load modeling; Target tracking; Three-dimensional displays; Visualization; Wires; Adaptive fuzzy sliding-mode controller (AFSMC); image feature; image-sensing technology; load swing; positioning area; tracking area;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2013.2286565
Filename :
6642099
Link To Document :
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