화학공학소재연구정보센터
IEEE Transactions on Automatic Control, Vol.39, No.4, 797-803, 1994
Disturbance Decoupling Using Constrained Sylvester Equations
In this note we present numerically efficient algorithms for the problem of disturbance decoupling with arbitrary pole placement, using state feedback with or without disturbance measurement. The problem is studied under conditions of generic solvability. The main tool for the development of the proposed algorithm is the notion of constrained Sylvester equations. These equations follow naturally from the already existing geometric conditions for the same problem in the literature.