Control

2
MID SEMESTER TEST 2014 B.TECH. III YEAR, VI SEMESTER SUBJECT: 6EE1 MODERN CONTROL THEORY ATTEMPT ANY 5 QUESTIONS ALL QUESTION CARRY EQUAL MARKS Q.1 write a short note on causality ? Q.2 explain the concept of linearity ? Q.3show that the following vectors are linearly independent ? X1 = (1,1,1,3), X2 =(1,2,3,4) X3= (2,3,4,9) Q.4 construct signal flow graph and state model for a system whose transfer function is Q.5 consider a SISO system whose state variable description is given by Q.6 explain the state model of following transfer function using cascade decomposition technique MID SEMESTER TEST 2014 B.TECH. III YEAR, VI SEMESTER SUBJECT: 6EE1 MODERN CONTROL THEORY ATTEMPT ANY 5 QUESTIONS ALL QUESTION CARRY EQUAL MARKS Q.1 write a short note on causality ? Q.2 explain the concept of linearity ? Q.3show that the following vectors are linearly independent ? X1 = (1,1,1,3), X2 =(1,2,3,4) X3= (2,3,4,9) Q.4 construct signal flow graph and state model for a system whose transfer function is Q.5 consider a SISO system whose state variable description is given by Q.6 explain the state model of following transfer function using cascade decomposition technique MID SEMESTER TEST 2014 B.TECH. III YEAR, VI SEMESTER SUBJECT: 6EE1 MODERN CONTROL THEORY ATTEMPT ANY 5 QUESTIONS ALL QUESTION CARRY EQUAL MARKS Q.1 write a short note on causality ? Q.2 explain the concept of linearity ? Q.3show that the following vectors are linearly independent ? X1 = (1,1,1,3), X2 =(1,2,3,4) X3= (2,3,4,9) Q.4 construct signal flow graph and state model for a system whose transfer function is Q.5 consider a SISO system whose state variable description is given by Q.6 explain the state model of following transfer function using cascade decomposition technique

description

this is the paper of control system in electrical engg

Transcript of Control

Page 1: Control

MID SEMESTER TEST 2014 B.TECH. III YEAR, VI SEMESTER SUBJECT: 6EE1 MODERN CONTROL THEORYATTEMPT ANY 5 QUESTIONSALL QUESTION CARRY EQUAL MARKS

Q.1 write a short note on causality ?Q.2 explain the concept of linearity ?Q.3show that the following vectors are linearly independent ?X1 = (1,1,1,3), X2 =(1,2,3,4) X3= (2,3,4,9)

Q.4 construct signal flow graph and state model for a system whose transfer function is

Q.5 consider a SISO system whose state variable description is given by

Q.6 explain the state model of following transfer function using cascade decomposition technique

MID SEMESTER TEST 2014 B.TECH. III YEAR, VI SEMESTER SUBJECT: 6EE1 MODERN CONTROL THEORYATTEMPT ANY 5 QUESTIONSALL QUESTION CARRY EQUAL MARKS

Q.1 write a short note on causality ?Q.2 explain the concept of linearity ?Q.3show that the following vectors are linearly independent ?X1 = (1,1,1,3), X2 =(1,2,3,4) X3= (2,3,4,9)

Q.4 construct signal flow graph and state model for a system whose transfer function is

Q.5 consider a SISO system whose state variable description is given by

Q.6 explain the state model of following transfer function using cascade decomposition technique

MID SEMESTER TEST 2014 B.TECH. III YEAR, VI SEMESTER SUBJECT: 6EE1 MODERN CONTROL THEORYATTEMPT ANY 5 QUESTIONSALL QUESTION CARRY EQUAL MARKS

Q.1 write a short note on causality ?Q.2 explain the concept of linearity ?Q.3show that the following vectors are linearly independent ?X1 = (1,1,1,3), X2 =(1,2,3,4) X3= (2,3,4,9)

Q.4 construct signal flow graph and state model for a system whose transfer function is

Q.5 consider a SISO system whose state variable description is given by

Q.6 explain the state model of following transfer function using cascade decomposition technique

MID SEMESTER TEST 2014 B.TECH. III YEAR, VI SEMESTER SUBJECT: 6EE1 MODERN CONTROL THEORYATTEMPT ANY 5 QUESTIONSALL QUESTION CARRY EQUAL MARKS

Q.1 write a short note on causality ?Q.2 explain the concept of linearity ?Q.3show that the following vectors are linearly independent ?X1 = (1,1,1,3), X2 =(1,2,3,4) X3= (2,3,4,9)

Q.4 construct signal flow graph and state model for a system whose transfer function is

Q.5 consider a SISO system whose state variable description is given by

Q.6 explain the state model of following transfer function using cascade decomposition technique