Deck 3: State Space Analysis and Eigen Values
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Deck 3: State Space Analysis and Eigen Values
1
The transfer function of a LTI system is given as 1/(s+1). What is the steady-state value of the unit-impulse response?
A)0
B)1
C)2
D)infinite
A)0
B)1
C)2
D)infinite
0
2
The values of the characteristic equation is given by:
A)eigen values
B)state matrix
C)eigen vector
D)none of the mentioned
A)eigen values
B)state matrix
C)eigen vector
D)none of the mentioned
eigen values
3
The state variable representation is preferred
A)to increase the sensitivity to the plant parameter variations
B)to reduce the sensitivity to the plant parameter variations
C)to make a plant simple and to control the transient response
D)none of the above
A)to increase the sensitivity to the plant parameter variations
B)to reduce the sensitivity to the plant parameter variations
C)to make a plant simple and to control the transient response
D)none of the above
to make a plant simple and to control the transient response
4
With the knowledge of state space representation the transfer function of the system
A)can be determined partly
B)can be determined completely
C)cannot be determined
D)none of the above
A)can be determined partly
B)can be determined completely
C)cannot be determined
D)none of the above
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5
Which among the following are the interconnected units of state diagram representation?
A)scalars
B)adders
C)integrators
D)all of the above
A)scalars
B)adders
C)integrators
D)all of the above
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6
Which among the following controls the speed of D.C. motor?
A)galvanometer
B)gauss meter
C)potentiometer
D)tachometer
A)galvanometer
B)gauss meter
C)potentiometer
D)tachometer
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7
State model representation is possible using _________
A)physical variables
B)phase variables
C)canonical state variables
D)all of the above
A)physical variables
B)phase variables
C)canonical state variables
D)all of the above
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8
Which among the following constitute the state model of a system in addition to state equations?
A)input equations
B)output equations
C)state trajectory
D)state vector
A)input equations
B)output equations
C)state trajectory
D)state vector
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9
Which among the following plays a crucial role in determining the state of dynamic system?
A)state variables
B)state vector
C)state space
D)state scalar
A)state variables
B)state vector
C)state space
D)state scalar
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10
What is Eigen value?
A)a vector obtained from the coordinates
B)a matrix determined from the algebraic equations
C)a scalar associated with a given linear transformation
D)it is the inverse of the transform
A)a vector obtained from the coordinates
B)a matrix determined from the algebraic equations
C)a scalar associated with a given linear transformation
D)it is the inverse of the transform
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11
Let us consider a 3×3 matrix A with Eigen values of ?1, ?2, ?3 and the Eigen values of A-1 are?
A)?1, ?2, ?3
B)1/?1,1/?2,1/?3
C)-?1, -?2, -?3
D)?1, 0, 0
A)?1, ?2, ?3
B)1/?1,1/?2,1/?3
C)-?1, -?2, -?3
D)?1, 0, 0
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12
The Eigen values of a 3×3 matrix are ?1, ?2, ?3 then the Eigen values of a matrix A3 are __________
A)?1, ?2, ?3
B)1/?1,1/?2,1/?3
C)?31,?32,?33
D)1, 1, 1
A)?1, ?2, ?3
B)1/?1,1/?2,1/?3
C)?31,?32,?33
D)1, 1, 1
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13
State space analysis is applicable even if the initial conditions are _____
A)zero
B)non-zero
C)equal
D)not equal
A)zero
B)non-zero
C)equal
D)not equal
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14
According to the property of state transition method, e0 is equal to _____
A)i
B)a
C)e^-at
D)-e^At
A)i
B)a
C)e^-at
D)-e^At
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15
Which mechanism in control engineering implies an ability to measure the state by taking measurements at output?
A)controllability
B)observability
C)differentiability
D)adaptability
A)controllability
B)observability
C)differentiability
D)adaptability
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16
State model representation is possible using _________
A)physical variables
B)phase variables
C)canonical state variables
D)all of the mentioned
A)physical variables
B)phase variables
C)canonical state variables
D)all of the mentioned
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17
Which among the following constitute the state model of a system in addition to state equations?
A)input equations
B)output equations
C)state trajectory
D)state vector
A)input equations
B)output equations
C)state trajectory
D)state vector
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18
Which among the following are the interconnected units of state diagram representation?
A)scalars
B)adders
C)integrator
D)all of the mentioned
A)scalars
B)adders
C)integrator
D)all of the mentioned
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19
Which among the following is a unique model of a system?
A)transfer function
B)state variable
C)block diagram
D)signal flow graphs
A)transfer function
B)state variable
C)block diagram
D)signal flow graphs
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20
State model is generally not suitable for measuring:
A)investigation of system properties
B)evaluation of time response
C)real variables
D)both a and b
A)investigation of system properties
B)evaluation of time response
C)real variables
D)both a and b
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21
______________ are the techniques for converting general state models into canonical one.
A)observable
B)controllable
C)diagoanlization
D)cannonical
A)observable
B)controllable
C)diagoanlization
D)cannonical
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22
The diagonalizing matrix is also known as:
A)eigen matrix
B)modal matrix
C)constant matrix
D)state matrix
A)eigen matrix
B)modal matrix
C)constant matrix
D)state matrix
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23
A system is said to be_____________ if it is possible to transfer the system state from any initial state to any desired state in finite interval of time.
A)controllable
B)observable
C)cannot be determined
D)controllable and observable
A)controllable
B)observable
C)cannot be determined
D)controllable and observable
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24
A system is said to be_________________ if every state can be completely identified by measurements of the outputs at the finite time interval.
A)controllable
B)observable
C)cannot be determined
D)controllable and observable
A)controllable
B)observable
C)cannot be determined
D)controllable and observable
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25
Kalman's test is for :
A)observability
B)controllability
C)optimality
D)observability and controllability
A)observability
B)controllability
C)optimality
D)observability and controllability
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