1 State-space models and response formulae.- 2 Transfer function matrix and realization problem.- 3 Controllability and observability.- 4. Stability and stabilization.- 5. Characteristic polynomial and eigenvalue assignment.- 6. Observers, exact model matching and decoupling.- 7. Deadbeat control and deadbeat servo problem.
1 State-space models and response formulae.- 2 Transfer function matrix and realization problem.- 3 Controllability and observability.- 4. Stability and stabilization.- 5. Characteristic polynomial and eigenvalue assignment.- 6. Observers, exact model matching and decoupling.- 7. Deadbeat control and deadbeat servo problem.
Produktdetails
Produktdetails
Lecture Notes in Control and Information Sciences 68
1 State-space models and response formulae.- 2 Transfer function matrix and realization problem.- 3 Controllability and observability.- 4. Stability and stabilization.- 5. Characteristic polynomial and eigenvalue assignment.- 6. Observers, exact model matching and decoupling.- 7. Deadbeat control and deadbeat servo problem.
1 State-space models and response formulae.- 2 Transfer function matrix and realization problem.- 3 Controllability and observability.- 4. Stability and stabilization.- 5. Characteristic polynomial and eigenvalue assignment.- 6. Observers, exact model matching and decoupling.- 7. Deadbeat control and deadbeat servo problem.
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