TY - GEN
T1 - Designing robust aw compensation for uncertain discrete-time linear systems
AU - Ríos-Bolívar, Addison
AU - Rivas-Echeverria, Francklin
PY - 2010
Y1 - 2010
N2 - In this contribution an approach for the synthesis of controller with compensation of saturation in the actuators is presented. The technique is applied in discrete-time linear systems with politopical uncertainties, taking as it bases a performance index on a transfer function that involves difference between the output signal of the actuator and the output of the controller and its effect on the control signal. Thus, the saturation in the actuators is considered like a disturbance in the performance of the action of the control signal, which allows to establish performance indices for the design of the control law (static output feddback), and for the synthesis of a gain of compensation for the problem of windup. Thus, the method exhibits certain properties of robustness in front of changes in the operation of the actuators. For the synthesis of the gains of static output feedback and the gain of compensation, a method derived from the techniques of robust optimal control in H2/H∞ for linear systems with politopical uncertainties, is proposed, which is based on linear matrix inequalities (LMIs). In order to verify the properties of the propose technique a numerical example is also presented.
AB - In this contribution an approach for the synthesis of controller with compensation of saturation in the actuators is presented. The technique is applied in discrete-time linear systems with politopical uncertainties, taking as it bases a performance index on a transfer function that involves difference between the output signal of the actuator and the output of the controller and its effect on the control signal. Thus, the saturation in the actuators is considered like a disturbance in the performance of the action of the control signal, which allows to establish performance indices for the design of the control law (static output feddback), and for the synthesis of a gain of compensation for the problem of windup. Thus, the method exhibits certain properties of robustness in front of changes in the operation of the actuators. For the synthesis of the gains of static output feedback and the gain of compensation, a method derived from the techniques of robust optimal control in H2/H∞ for linear systems with politopical uncertainties, is proposed, which is based on linear matrix inequalities (LMIs). In order to verify the properties of the propose technique a numerical example is also presented.
KW - Discrete-time linear systems
KW - H/H norms
KW - Linear matrix inequalities (LMI)
KW - Polytopical uncertainty
KW - Robust control
KW - Static output feedback
UR - https://www.scopus.com/pages/publications/79952579134
M3 - Conference contribution
AN - SCOPUS:79952579134
SN - 9789604741939
T3 - Proceedings of the 11th WSEAS International Conference on Automation and Information, ICAI '10
SP - 33
EP - 38
BT - Proceedings of the 11th WSEAS International Conference on Automation and Information, ICAI '10
T2 - 11th WSEAS International Conference on Automation and Information, ICAI '10
Y2 - 13 June 2010 through 15 June 2010
ER -