Title :
Reliable control to actuator signal attenuation-type faults
Author :
Shor, M.H. ; Kolodziej, W.J.
Author_Institution :
Dept. of Electr. & Comput. Eng., Oregon State Univ., Corvallis, OR, USA
Abstract :
Controller designs are presented that are robust to partial actuator signal losses in linear systems. Design ranges are specified for the attenuation factor on each actuator signal. Both closed-loop stability and a prespecified H∞ norm bound are guaranteed for any combination of actuator attenuation-type failures in the design ranges. The reliable controller designs derived are related to associated soft-constrained (nonlinear) min-max-max game problems. Two choices of regulated-output variable are made. When the control signal is weighted by the attenuation factor in the cost functional, no nontrivial Nash equilibrium solution exists among pure strategies, but a reliable controller design is found corresponding to the upper value of the game. When the control signal is not weighted by the attenuation factor in the cost functional, a Nash (saddle-point) equilibrium solution exists with game value zero, resulting in a second reliable controller design
Keywords :
actuators; closed loop systems; control system synthesis; game theory; linear systems; optimal control; reliability; stability; Nash saddle-point equilibrium solution; actuator signal attenuation-type faults; attenuation factor; closed-loop stability; design ranges; linear systems; partial actuator signal losses; prespecified H∞ norm bound; reliable control; soft-constrained nonlinear min-max-max game problems; Attenuation; Control systems; Cost function; Hydraulic actuators; Linear systems; Nash equilibrium; Robust control; Signal design; Stability; Weight control;
Conference_Titel :
Decision and Control, 1993., Proceedings of the 32nd IEEE Conference on
Conference_Location :
San Antonio, TX
Print_ISBN :
0-7803-1298-8
DOI :
10.1109/CDC.1993.325847