Title :
Tracking performance evaluation in presence of hard nonlinearities for oscillatory antenna control
Author :
Clara M. Ionescu;Amélie Chevalier;Cosmin Copot;Robin De Keyser
Author_Institution :
Ghent University, Department of Electrical energy, Systems and Automation, Technologiepark 914, 9052 Zwijnaarde, Belgium
Abstract :
In this paper, closed loop performance of a system with hard nonlinear limitations is analyzed. In order to adequately control such a challenging process, an Internal Model Control strategy has been implemented. The controller has been applied to a real time process described by a radio satellite antenna. The performance of the closed loop has been evaluated by changing the natural frequency and the damping factor of the process transfer function. The experimental results show that the designed IMC controller is robust to changes in the natural frequency between [-5%, +20%] and to changes in the damping factor between [-50%,+100%]. The performance has also been tested for various resolution steps in the actuator (i.e. a stepper motor).
Keywords :
"Transfer functions","Robustness","Mathematical model","Damping","Process control","Antennas","Azimuth"
Conference_Titel :
System Theory, Control and Computing (ICSTCC), 2015 19th International Conference on
DOI :
10.1109/ICSTCC.2015.7321321