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Solutions Manual for Communication Systems

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"Communication Systems: An Introduction to Signals and Noise in Electrical Communication" provides a comprehensive exploration of the fundamental principles underlying modern communication systems. The manual delves into essential topics such as signal transmission, noise analysis, modulation and demodulation techniques, and the impact of bandwidth and signal-to-noise ratios on communication performance. With a focus on both analog and digital communication systems, the manual bridges theoretical concepts with practical applications, equipping readers with the skills to understand and analyze the behavior of electrical signals in the presence of noise. It also covers critical areas such as error detection and correction, communication protocols, and the design of transmitters and receivers. This resource is ideal for students, engineers, and professionals in telecommunications, signal processing, and electrical engineering, as it lays the foundation for mastering advanced communication technologies and aligns with industry-relevant certifications like CWCP, WCET, and CRFE. Whether used for academic study or professional growth, this manual serves as a valuable guide to the principles and applications of communication systems.

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CWSP - Certified Wireless Security Professional
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Uploaded on
December 1, 2024
Number of pages
483
Written in
2024/2025
Type
Exam (elaborations)
Contains
Questions & answers

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Solutions Manual
to accompany


Communication
Systems
An Introduction to Signals and Noise in
Electrical Communication
Fourth Edition


A. Bruce Carlson
Rensselaer Polytechnic Institute

Paul B. Crilly
University of Tennessee

Janet C. Rutledge
University of Maryland at Baltimore

,Solutions Manual to accompany
COMMUNICATION SYSTEMS: AN INTRODUCTION TO SIGNALS AND NOISE IN ELECTRICAL COMMUNICATION,
FOURTH EDITION
A. BRUCE CARLSON, PAUL B. CRILLY, AND JANET C. RUTLEDGE

Published by McGraw-Hill Higher Education, an imprint of The McGraw-Hill Companies, Inc., 1221 Avenue of the Americas,
New York, NY 10020. Copyright © The McGraw-Hill Companies, Inc., 2002, 1986, 1975, 1968. All rights reserved.

The contents, or parts thereof, may be reproduced in print form solely for classroom use with COMMUNICATION SYSTEMS: AN
INTRODUCTION TO SIGNALS AND NOISE IN ELE CTRICAL COMMUNICATION, provided such reproductions bear copyright
notice, but may not be reproduced in any other form or for any other purpose without the prior written consent of The McGraw-Hill
Companies, Inc., including, but not limited to, in any network or other electronic storage or transmission, or broadcast for distance
learning.

www.mhhe.com

,Chapter 2

2.1-1
 
jf Ae jf n m
cn Ae
e
jf sinc(m  n)  
T0/2
j2p ( mn )f 0 t
dt Ae 
 T0 /2
T0 0 otherwise

2.1-2




2 0
c0 v(t) T 2p nt T0 /2 2p nt 2A pn
c  Acos dt  ( A)cos dt  sin

T 

n
0 T T /4
0




T pn 2
0 0 0


n 0 1 2 3 4 5 6 7
cn 0 2A/p 0 2 A / 3p 0 2 A / 5p 0 2 A / 7p
arg cn 0 180 0 180


2.1-3




c0  v(t) A /2
2
c  T /2  0 2 At  2p nt A A


A  cos
dt  sinp n  (cosp n 1)





n
T0 0  T0  T0 pn (p n)2
n 0 1 2 3 4 5 6
cn 0.5A 0.2A 0 0.02A 0 0.01A 0
arg cn 0 0 0 0


2.1-4




2 T0 /2 2p t
c  Acos 0 (cont.)
0
T 
0 T
0 0




2-1

, 2 2pt 2 A sin p p n  2t / T sin p p n 2t / T T / 2
2p nt 
T /2 0

cn   Acos dt  
0
cos 0
 0

T0 0 T0 T0 T0  4(p p n) / T0 4(p  p n) / T0 0
A
 sinc(1  n)  sinc(1  n) A / 2 n 1

2 0 otherwise

2.1-5




c0  v(t)
2 0T0 /2 2p nt A
c  j Asin dt  j (1 cosp n)
T 
n
0 T pn
0 0


n 1 2 3 4 5
cn 2A/p 0 2 A / 3p 2 A / 5p
arg cn 90 90 90

2.1-6




c0  v(t) 0
2 A sin p p n  2t / T0 sin p p n  2t / T 
2 T
c  j T /2 2p t 2p nt
dt  j 
0
Asin sin  0 
n
T 
0
T T T 4(p p n)/ T 4(p p n)/ T 
0
m jA / 02 
0 0 0 0 0
A
 j sinc(1n )  sinc(1 n)  n 1

2  0 otherwise

2.1-71
c   T0 /2  jnw0 t
T0
 jnw 0t

n

T0  0 v(t) e dt  
T
v(t)e dt 


T0 T0 /2
where T /2
v(t)e  jnw0 t dt 
 v(l  T0 /2) e e
 jnw l  jnw 0 0T0 /2
dl
0 0
T0 /2
e v(t )e jnw0 t dt

jnp

0

since e jnp 1 for even n, cn 0 for even n




2-2

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