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Solution Manual for Automatic Control Systems (10th Edition) by Farid Golnaraghi and Benjamin C. Kuo

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Enhance your control engineering expertise with the Solution Manual for Automatic Control Systems (10th Edition) by Farid Golnaraghi and Benjamin C. Kuo. This comprehensive manual provides full, step-by-step solutions and explanations for all textbook problems, covering modeling of dynamic systems, time and frequency response analysis, stability, root locus, and PID control design. Ideal for electrical, mechanical, and systems engineering students, it offers both theoretical clarity and practical design insight for mastering control systems.

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Institution
Automatic Control Systems,
Course
Automatic Control Systems,

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SOLUTION MANUAL

,, 9th Edition
Automatic Control Systems Chapter 2 Solutions Golnaraghi, Kuo


Chapter 2

2‐1 (a) Poles: s = 0, 0, −1, −10; (b) Poles: s = −2, −2;

Zeros: s = −2, , , . Zeros: s = 0.

The pole and zero at s = −1 cancel each other.




(c) Poles: s = 0, −1 + j, −1 − j; (d) Poles: s = 0, −1, −2, .

Zeros: s = −2.




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2-2) a) ‫ܩ‬ሺ‫ݏ‬ሻ ൌ
௦ሺ௦ ଶሻሺ௦ ଷሻమ


b) ௦మ ሺ௦ ଵሻሺ௦ ସሻ
‫ܩ‬ሺ‫ݏ‬ሻ ൌ
௦మ ଵ
c) ௦మሺ௦ ଷሻሺ௦ ଵሻమ
‫ܩ‬ሺ‫ݏ‬ሻ







2‐1

,, 9th Edition
Automatic Control Systems Chapter 2 Solutions Golnaraghi, Kuo

2-3)

MATLAB code:




2‐2

, , 9th Edition
Automatic Control Systems Chapter 2 Solutions Golnaraghi, Kuo


clear all;

s = tf('s')



'Generated transfer function:'

Ga=10*(s+2)/(s^2*(s+1)*(s+10))

'Poles:'

pole(Ga)

'Zeros:'

zero(Ga)



'Generated transfer function:'

Gb=10*s*(s+1)/((s+2)*(s^2+3*s+2))

'Poles:';

pole(Gb)

'Zeros:'

zero(Gb)



'Generated transfer function:'

Gc=10*(s+2)/(s*(s^2+2*s+2))

'Poles:';

pole(Gc)

'Zeros:'

zero(Gc)



'Generated transfer function:'

Gd=pade(exp(-2*s),1)/(10*s*(s+1)*(s+2))

'Poles:';

pole(Gd)

'Zeros:'

zero(Gd)

2‐3

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