Title :
Speed control of a two-degrees of freedom induction motor with rotor Helical Motion for industrial applications
Author :
Caruso, Michele ; Cecconi, V. ; Di Dio, V. ; Di Tommaso, A.O. ; Genduso, Fabio ; La Cascia, D. ; Liga, R. ; Miceli, Rosario
Author_Institution :
Dipt. di Energia, Ing. dell´Inf. e Modelli Matematici (DEIM), Univ. degli Studi di Palermo, Palermo, Italy
Abstract :
This paper describes the realization of a two-degrees of freedom induction motor prototype with rotor helical motion, suitable for several industrial applications as grinders, augers, drilling and milling spindles, robotic arms and drives for medical tools and prostheses. This prototype was realized by combining a three-phase tubular linear induction motor (TLIM) with the stator of a three-phase rotary induction motor, resulting in a THMIM (Tubular Helical Motion Induction Motor). Moreover, a possible simple electrical drive, capable to control the helical motion, is proposed, simulated and analyzed. In particular, the mathematical model of the THMIM has been initially developed and, then, the complete drive has been simulated in MATLAB-Simulink. The simulation results demonstrate that, by acting separately on the control of rotary and tubular machine components, a very accurate controlled helical motion can be achieved.
Keywords :
angular velocity control; linear induction motors; machine control; MATLAB; Simulink; THMIM; TLIM; industrial applications; rotor helical motion; speed control; three-phase rotary induction motor; three-phase tubular linear induction motor; tubular helical motion induction motor; Induction motors; Load modeling; Prototypes; Rotors; Software packages; Velocity control; Helical motor; TLIM; industrial applications; speed control; three-phase induction motors;
Conference_Titel :
AEIT Annual Conference - From Research to Industry: The Need for a More Effective Technology Transfer (AEIT), 2014
Conference_Location :
Trieste
Print_ISBN :
978-8-8872-3724-5
DOI :
10.1109/AEIT.2014.7002051