Control Systems
Signal Flow Graph and Block Diagram
Marks 1Marks 2Marks 5
Basic of Control Systems
Marks 1Marks 2
Frequency Response Analysis
Marks 1Marks 2Marks 5Marks 8Marks 10
Root Locus Diagram
Marks 1Marks 2
State Space Analysis
Marks 1Marks 2Marks 5Marks 10
1
GATE ECE 2015 Set 2
Numerical
+2
-0
The transfer function of a mass-spring damper system is given by $${\rm{G(s) = }}{1 \over {M{s^2} + Bs + K}}$$ The frequency response data for the system are given in the following table. GATE ECE 2015 Set 2 Control Systems - Frequency Response Analysis Question 19 English The unit step response of the system approaches a steady state value of ______.
Your input ____
2
GATE ECE 2014 Set 2
Numerical
+2
-0
The Bode asymptotic magnitude plot of a minimum phase system is shown in the figure. GATE ECE 2014 Set 2 Control Systems - Frequency Response Analysis Question 20 English

If the system is connected in a unity negative feedback configuration, the steady state error of the closed loop system, to a unit ramp input, is

Your input ____
3
GATE ECE 2014 Set 1
Numerical
+2
-0
The phase margin in degrees of G(s)=$${{10} \over {\left( {s + 0.1} \right)\left( {s + 1} \right)\left( {s + 10} \right)}},$$ using the asymptotic Bode plot is ______
Your input ____
4
GATE ECE 2011
MCQ (Single Correct Answer)
+2
-0.6
The input-output transfer function of a plant is h(s)=$${{100} \over {s{{\left( {s + 10} \right)}^2}}}$$. The plant is placed in a unity negative feedback configuration as shown in the figure below. GATE ECE 2011 Control Systems - Frequency Response Analysis Question 30 English The signal flow graph that DOES NOT model the plant transfer function H(s) is
A
GATE ECE 2011 Control Systems - Frequency Response Analysis Question 30 English Option 1
B
GATE ECE 2011 Control Systems - Frequency Response Analysis Question 30 English Option 2
C
GATE ECE 2011 Control Systems - Frequency Response Analysis Question 30 English Option 3
D
GATE ECE 2011 Control Systems - Frequency Response Analysis Question 30 English Option 4
GATE ECE Subjects
Signals and Systems
Network Theory
Control Systems
Digital Circuits
General Aptitude
Electronic Devices and VLSI
Analog Circuits
Engineering Mathematics
Microprocessors
Communications
Electromagnetics