Title :
Loop Shaping Design Related to LQG/LTR for SISO Minimum Phase Plants
Author :
Kazerooni, H. ; Narayanan, K.
Author_Institution :
Mechanical Engineering Department, University of Minnesota, Minneapolis
Abstract :
One method of model-based compensator design for linear systems consists of two stages: state feedback design and observer design. A key issue in recent work in multivariable synthesis involves selecting the observer (state feedback) gain so that the final Loop transfer function is the same as the state feedback (observer) loop transfer function. This is called Loop Transfer Recovery (LTR)(1,4,6,7). This paper shows how identification of the internal mechanism of the LTR provides simple design rules with Little algebra for single-input single-output systems. In the SISO case, the LQG/LTR reduces to computation of a compensator that shapes the loop transfer function by 1) cancelling the zeros of the plant with the compensator poles, 2) locating a new set of zeros for the compensator to shape the loop transfer function.
Keywords :
Algebra; Computer errors; Control systems; Control theory; Frequency; Mathematical model; Poles and zeros; Shape control; State feedback; Transfer functions;
Conference_Titel :
American Control Conference, 1987
Conference_Location :
Minneapolis, MN, USA