1
GATE EE 2003
MCQ (Single Correct Answer)
+1
-0.3
A control system is defined by the following mathematical relationship $$${{{d^2}x} \over {d{t^2}}} + 6{{dx} \over {dt}} + 5x = 12\left( {1 - {e^{ - 2t}}} \right)$$$

The response of the system as $$\,t \to \infty $$ is

A
$$x=6$$
B
$$x=2$$
C
$$x=2.4$$
D
$$x=-2$$
2
GATE EE 2000
MCQ (Single Correct Answer)
+1
-0.3
A unity feedback system has open loop transfer function $$G(s).$$ The steady-state error is zero for
A
step input and type $$–1$$ $$G(s)$$
B
ramp input and type $$–1$$ $$G(s)$$
C
step input and type $$-$$ $$G(s)$$
D
ramp input and type $$-$$ $$0$$ $$G(s)$$
3
GATE EE 1998
MCQ (Single Correct Answer)
+1
-0.3
The output of a linear time invariant control system is $$c(t)$$ for a certain input $$r(t).$$ If $$r(t)$$ is modified by passing it through a block whose transfer function is $${e^{ - s}}$$ and then applied to the system, the modified output of the system would be
A
$${{c\left( t \right)} \over {1 + {e^t}}}$$
B
$${{c\left( t \right)} \over {1 + {e^{ - t}}}}$$
C
$$c\left( {t - 1} \right)u\left( {t - 1} \right)$$
D
$$c\left( t \right)\,\,u\left( {t - 1} \right)$$
4
GATE EE 1997
MCQ (Single Correct Answer)
+1
-0.3
Introduction of integral action in the forward path of a unity feedback system result in a
A
marginally stable system
B
system with no steady state error
C
system with increased stability margin
D
system with better speed of response
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