现代控制理论精品ppt课件(英文版)Chapter.ppt
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1、Chapter 4 State Space Analysis ofLinear Control SystemState space analysis of linear systemControllability and CriterionObservability and Criterion Duality PrincipleControllable&Observable Canonical FromSystem structure decompositionSystem realization1.Controllability and Observability Definition of
2、 controllability:For linear system given the initial state at if there exists finite time interval and admissible input u(t)thatcould transit to any state within time ,then the system is controllable atExplanation1)Input affected state is controllable2)u(t)satisfies unique solution condition3)Defini
3、tion domain is finite interval Controllable Criterion:1)For any LTI continuous system with n dimension stateThe necessary and sufficient condition of system being completely controllable is 2)If the system has distinct eigenvalue ,the necessary and sufficient condition of system being completely con
4、trollable is matrix B does not contain row with all 0 element in diagonal canonical form obtained through equivalent transformOutput controllableDefinition:For linear system there exists admissible input u(t)that could transit any given to within finite timeinterval then the system is output control
5、lable.Criterion:For any LTI continuous system with m dimension outputThe necessary and sufficient condition of system being completely output controllable is Example.Known system with block diagram as following,please study the state and output controllability.Solution:System state descriptionSo the
6、 system(state)is not complete controllableThe output is completely controllable2.Observability and Criterion Definition of Observability:For linear systemGiven ,if the initial state could be uniquely determined according to the measurable output over interval then the system is observable.Explanatio
7、n:1)Output reflected state is observable2)Considering only the system free motion when studying observability Observabiltiy Criterion:1)For any LTI continuous system with m dimension outputThe necessary and sufficient condition of system being completely observable is Observabiltiy Criterion:2)If th
8、e system has distinct eigenvalues the necessary and sufficient condition of system being completely observable is does not contain column with all 0 element in diagonal canonical form obtained through equivalent transformExample.Please examine the system observability.Solution:So the system is obser
9、vableSolution:A is diagonal form with distinct eigenvalue.has no column with all elements are zero.So the system is observableObservabiliy and controllability of discrete system (not required)3.Duality principle For linear system S1and system S2System S1 and S2 are called dual systemsBlock diagram o
10、f dual systemsNote the relationship between dual systemsDuality principle:the system S1 is completely controllable(or observable)if its dual system S2 is completely observable(or controllable).4.Controllable and Observable Canonical From 1)Controllable canonical form SISO systemThen the state space
11、model is called controllable canonical formTheorem:if system(A,B,C)is completely controllable,thenthere exists a nonsingular linear transformation makingsystem(A,B,C)to be controllable canonical form.Matrix P is determined asStep of transform state space model to controllable canonical form:1)Calcul
12、ate matrix2)Calculate invert of 3)Set 4)Calculate 5)Controllable canonical form2)Observable canonical form SISO systemThen the system is called observable canonical formTheorem:if system(A,B,C)is completely observable,thenthere exists a nonsingular linear transform makingsystem(A,B,C)to be observabl
13、e canonical form.Matrix T is determined asStep of transform system to observable canonical form:1.Calculate matrix2.Calculate invert of 3.Set 4.Calculate 5.Observable canonical form5.System structure decomposition If the LTI system is not completely controllable or observable.For LTI system we could
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