Title :
Modern Wiener--Hopf design of optimal controllers Part I: The single-input-output case
Author :
Youla, Dante C. ; Bongiorno, Joseph J., Jr. ; Jabr, Hamid A.
Author_Institution :
Polytechnic Institute of New York, Farmingdale, NY, USA
fDate :
2/1/1976 12:00:00 AM
Abstract :
An analytical feedback design technique is presented here for single-input-output processes which are characterized by their rational transfer functions. The design procedure accounts for the topological structure of the feedback system ensuring asymptotic stability for the closed-loop configuration. The plant or process being controlled can be unstable and/or nonminimum phase. The treatment of feedback sensor noise, disturbance inputs, and process saturation is another major contribution of this work. The cornerstone in the development is the selection of a performance index based on sound engineering considerations. It is these considerations, in fact, which ensure the existence of an optimal compensator for the system and make the performance index a natural one for the problem at hand.
Keywords :
Feedback systems; Linear systems, time-invariant continuous-time; Optimal control; Wiener-Hopf theory; Acoustic noise; Acoustic sensors; Acoustical engineering; Asymptotic stability; Feedback; Optimal control; Performance analysis; Process control; Sensor phenomena and characterization; Transfer functions;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.1976.1101139