Abstract
This paper briefly documents key aspects of the dynamic modeling of a gantry crane, designed to transport 1:24 scale models of standard sixty foot long shipping containers using industrially applicable detection and control of dvnamic cable sw ing resulting fiom very high speed operation, and env7ironmental disturbances such as steady or gusting winds. A state variable feedback controller is designed for the gantry position and speed, as well as the load angle and angular velocity in order to move the containers of uncertain mass as quickliv, accuratelx, and safely as possible. An overview is then presented of the mechanical structure, automation and drives configuration, measurements and actuators, control loops and mass observers, and softw are aspects of the crane design and implementation using a low cost commercial Siemens PLC. Container position and swing control loop commissioning and performance test results are presented and compared with closely matching simulation results which verifNr the successful design and implementation of the control loops, and of the crane as a whole. ©2004 IEEE.
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CITATION STYLE
Benn, L., Burton, B., Ireland, J., Wang, S., & Harley, R. (2004). Model gantry crane with dynamic feedback swing control. In IEEE International Symposium on Industrial Electronics (Vol. 1, pp. 265–269). https://doi.org/10.1109/ISIE.2004.1571818
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