Q1: The bode diagram of the following open-loop T.F is as shown in Fig. below: K GH(s)= s(s+2)(s+2) B Dagam 100 110 120 140 150 160 F y 1- Find phase margin, gain margin, gain crossover frequency, phase Crossover frequency, delay margin and comment on the stability 2- Find the value of K for oi =3 rad/ sec 3- Find the value of K for G.M = 30 db 4- Find the value of K for P.M =50 deg %3D Phese eg
Q1: The bode diagram of the following open-loop T.F is as shown in Fig. below: K GH(s)= s(s+2)(s+2) B Dagam 100 110 120 140 150 160 F y 1- Find phase margin, gain margin, gain crossover frequency, phase Crossover frequency, delay margin and comment on the stability 2- Find the value of K for oi =3 rad/ sec 3- Find the value of K for G.M = 30 db 4- Find the value of K for P.M =50 deg %3D Phese eg
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![Q1: The bode diagram of the following open-loop T.F is as shown in Fig. below:
K
GH(s)=
s(s+2)(s+2)
Bo Dagram
100
10
120
140
160
Facy
1- Find phase margin, gain margin, gain crossover frequency, phase
Crossover frequency, delay margin and comment on the stability
2- Find the value of K for oi =3 rad / sec
3- Find the value of K for G.M = 30 db
%3D
4- Find the value of K for P.M =50 deg
(gp)apngubeyN
(Bep) w](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faf0e509a-4672-40d2-ab84-92b19531f9d2%2F690eadf2-e51e-4048-a7b6-0640e4c0dde8%2F866xwv9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q1: The bode diagram of the following open-loop T.F is as shown in Fig. below:
K
GH(s)=
s(s+2)(s+2)
Bo Dagram
100
10
120
140
160
Facy
1- Find phase margin, gain margin, gain crossover frequency, phase
Crossover frequency, delay margin and comment on the stability
2- Find the value of K for oi =3 rad / sec
3- Find the value of K for G.M = 30 db
%3D
4- Find the value of K for P.M =50 deg
(gp)apngubeyN
(Bep) w
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