DocumentCode
2667150
Title
Semi-automatic control of overhead crane using potential method
Author
Suzuki, Makio ; Terashima, Kazuhiko
Author_Institution
Toyohashi Univ. of Technol., Japan
Volume
5
fYear
2000
fDate
2000
Firstpage
3224
Abstract
In practical industries, overhead traveling cranes are usually manipulated by a human operator. The transfer object can be freely moved in three-dimensional space by the human operator for various tasks. Although manipulation for the moving direction of a crane is easy, the crane´s operation without vibration of a load is difficult for unskilled operators, and therefore swinging of the object occurs and residual vibration is generated after the transfer object reaches a goal point. Therefore, a semi-automatic control system is proposed in terms of obstacle avoidance by manual operation by human operator and feedback control for suppression of swing by automatic controller. Further, in order to heighten safety and prevent human error, the command input to avoid obstacles and go towards a goal is generated by the fusion of human command using joystick and potential information using diffusion equation based on the known environment map. Position and vibration control of a crane are carried out by a fixed-pole controller for the command input (stated previously). The usefulness of the proposed method is demonstrated through simulation and experimental studies
Keywords
computerised control; cranes; feedback; human factors; interactive systems; user interfaces; vibration control; automatic controller; command input; diffusion equation; feedback control; fixed-pole controller; human command; human error; human operator; known environment map; moving direction; obstacle avoidance; overhead crane control; overhead traveling cranes; potential information; potential method; practical industries; residual vibration; safety; semi-automatic control; swing suppression; three-dimensional space; transfer object; unskilled operators; vibration control; Automatic control; Control systems; Cranes; Equations; Feedback control; Fusion power generation; Humans; Manuals; Safety; Space exploration;
fLanguage
English
Publisher
ieee
Conference_Titel
Systems, Man, and Cybernetics, 2000 IEEE International Conference on
Conference_Location
Nashville, TN
ISSN
1062-922X
Print_ISBN
0-7803-6583-6
Type
conf
DOI
10.1109/ICSMC.2000.886499
Filename
886499
Link To Document