13)Let z = 5, p=10 , in Question 12. For which of the following values of K is the system stable K = 0.4 K = 1.0 K = 0 K = 0

Introductory Circuit Analysis (13th Edition)
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Publisher:Robert L. Boylestad
Chapter1: Introduction
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Q13 only
Common data for Q10-Q13
Consider a system with the following transfer
function, in a unity feedback setting tracking a unit
step:
2500
G(s)
s2 – 1000
10)The % overshoot is
11)For this system, what kind of
compensator will achieve a faster
transient response?
Lead
Lag
Lead-Lag
None of these
12)For the system in Question 10, with a
compensator of the form
K), K, z, p > 0 , (assume a stabilising
K ) the value of the velocity error constant
K, is
13)Let z = 5, p= 10 , in Question 12.
For which of the following values of K
is the system stable
K = 0.4
K = 1.0
K = 0
K = ∞
Transcribed Image Text:Common data for Q10-Q13 Consider a system with the following transfer function, in a unity feedback setting tracking a unit step: 2500 G(s) s2 – 1000 10)The % overshoot is 11)For this system, what kind of compensator will achieve a faster transient response? Lead Lag Lead-Lag None of these 12)For the system in Question 10, with a compensator of the form K), K, z, p > 0 , (assume a stabilising K ) the value of the velocity error constant K, is 13)Let z = 5, p= 10 , in Question 12. For which of the following values of K is the system stable K = 0.4 K = 1.0 K = 0 K = ∞
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