Title :
Stability Robustness Improvement of Direct Eigenspace Assignment Based Feedback Systems Using Singluar Value Sensitivities
Author_Institution :
Controls Engineer. Member AIAA, Lewis Research Center Group, Sverdrup Technology Inc., Cleveland, OH 44135
Abstract :
A methodology to improve the stability robustness of feedback control systems designed using direct eigenspace assignment techniques is presented. The method consists of considering the sensitivity of the minimum singular value of the return difference transfer matrix at the plant input to small changes in the desired closed-loop eigenvalues and the specified elements of the desired closed-loop eigenvectors. Closed-form expressions for the gradient of the minimum return difference singular value with respect to desired closed-loop eigenvalue and eigenvector parameters are derived. Closed-form expressions for the gradients of the control feedback gains with respect to the specified eigenspace parameters are obtained as an intermediate step. The use of the gradient information to improve the guaranteed gain and phase margins in eigenspace assignment based designs is demonstrated by application to an advanced fighter aircraft.
Keywords :
Closed-form solution; Control systems; Eigenvalues and eigenfunctions; Feedback control; Robust control; Robust stability; Shape; Transient response; Vehicle dynamics; Vehicles;
Conference_Titel :
American Control Conference, 1989
Conference_Location :
Pittsburgh, PA, USA