Title :
LQG control with an H∞ performance bound: a riccati equation approach
Author :
Bernstein, Dennis S. ; Haddad, Wassim M.
Author_Institution :
Harris Corporation, Government Aerospace Systems Division, MS 22/4848, Melboure, FL 32902
Abstract :
An LQG control-design problem involving a constraint on H∞ disturbance attenuation is considered. The H∞ performance constraint is embedded within the optimization process by replacing the covariance Lyapunov equation by a Riccati equation whose solution leads to an upper bound on L2 performance. In contrast to the pair of separated Riccati equations of standard LQG theory, the H∞-constrained gains are given by a coupled system of three modified Riccati equations. The coupling illustrates the breakdown of the separation principle for the H∞-constrained problem. Both full- and reduced-order design problems are considered with an H∞ attenuation constraint involving both state and control variables. An algorithm is developed for the full-order design problem and illustrative numerical results are given. A more complete version of this paper is given in [41].
Keywords :
Attenuation; Differential equations; Lyapunov method; Power system modeling; Riccati equations; Robustness; Stability; State-space methods; Stochastic resonance; Uncertainty;
Conference_Titel :
American Control Conference, 1988
Conference_Location :
Atlanta, Ga, USA