Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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pls use 

Q = 1

T = 8  

ANSWER SOON PLEASE 

R(s)
E(s)
Y(s)
K
G(s)
Figure Q4
Transcribed Image Text:R(s) E(s) Y(s) K G(s) Figure Q4
Figure Q4 shows a position-control system for motion control system. Suppose that, for
constant input, steady state errors less than two percent, ess< 2% is obtained.
Q4
Given that G(s)=2.Q/(s³+4s²+5.Ts+2.Q).
[Where Q and T depend on the respective fifth and sixth digit of your matrix number. Example
matric no. CD180100=CD1801TQ; T=0, Q=0; G(s)=2.0/(s³+4s²+5.0s+2.0).]
a) Find the position error constant, Kp
b) Determine the gain, K value for steady state error condition as stated
c) Check the stability requirement for K, using Routh-Hurwitz criterion
d) Comment on the requirement of gain will satisfied or unsatisfied the systen
Transcribed Image Text:Figure Q4 shows a position-control system for motion control system. Suppose that, for constant input, steady state errors less than two percent, ess< 2% is obtained. Q4 Given that G(s)=2.Q/(s³+4s²+5.Ts+2.Q). [Where Q and T depend on the respective fifth and sixth digit of your matrix number. Example matric no. CD180100=CD1801TQ; T=0, Q=0; G(s)=2.0/(s³+4s²+5.0s+2.0).] a) Find the position error constant, Kp b) Determine the gain, K value for steady state error condition as stated c) Check the stability requirement for K, using Routh-Hurwitz criterion d) Comment on the requirement of gain will satisfied or unsatisfied the systen
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