A parametric LQ approach to multiobjective control system designThe synthesis of a constant parameter output feedback control law of constrained structure is set in a multiple-objective linear quadratic regulator (MOLQR) framework. The use of intuitive objective functions such as model-following ability and closed-loop trajectory sensitivity allows multiple-objective decision-making techniques, such as the surrogate worth tradeoff method, to be applied. For the continuous-time deterministic problem with an infinite time horizon, dynamic compensators as well as static output feedback controllers can be synthesized using a descent Anderson-Moore algorithm modified to impose linear equality constraints on the feedback gains by moving in feasible directions. Results of three different examples are presented, including a unique reformulation of the sensitivity reduction problem.
Document ID
19890041234
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Kyr, Doug (NASA Lewis Research Center Cleveland, OH, United States)
Buchner, Marc (Case Western Reserve University Cleveland, OH, United States)