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9780071402286

Schaum's Outline of Analog and Digital Communications

by
  • ISBN13:

    9780071402286

  • ISBN10:

    0071402284

  • Edition: 2nd
  • Format: Paperback
  • Copyright: 2002-12-10
  • Publisher: McGraw Hill
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Supplemental Materials

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Summary

This study guide acts as an excellent tutor in this subject. It offers clear explanations of the mathematics behind signal and linear system analysis, fully covering communications theory, and provides an introduction to information theory and coding. Also included are more than 400 solved problems and hundreds more with answers, so students can test themselves and track theor own progress as they master various concepts and their applications.

Table of Contents

Signals and Spectrap. 1
Introductionp. 1
Fourier Series and Discrete Spectrap. 1
Fourier Transforms and Continuous Spectrap. 2
Properties of Fourier Transformp. 3
Fourier Transforms of Power Signalsp. 5
Signal Transmission and Filteringp. 24
Introductionp. 24
Impulse Response and Frequency Responsep. 24
Filter Characteristics of LTI Systemsp. 26
Transmission of Signals Through LTI Systemsp. 26
Filtersp. 27
Quadrature Filters and Hilbert Transformsp. 29
Amplitude Modulationp. 43
Introductionp. 43
Amplitude Modulationp. 43
Double-Sideband Modulationp. 44
Ordinary Amplitude Modulationp. 45
Single-Sideband Modulationp. 47
Vestigial-Sideband Modulationp. 49
Frequency Translation and Mixingp. 52
Frequency-Division Multiplexingp. 52
Angle Modulationp. 68
Introductionp. 68
Angle Modulation and Instantaneous Frequencyp. 68
Phase and Frequency Modulationp. 69
Fourier Spectra of Angle-Modulated Signalsp. 70
Narrowband Angle Modulationp. 70
Sinusoidal (or Tone) Modulationp. 71
Bandwidth of Angle-Modulated Signalsp. 71
Generation of Angle-Modulated Signalsp. 72
Demodulation of Angle-Modulated Signalsp. 74
Digital Transmission of Analog Signalsp. 90
Introductionp. 90
Pulse Code Modulationp. 90
Sampling Theoremp. 91
Samplingp. 91
Pulse Amplitude Modulationp. 93
Quantizingp. 93
Encodingp. 96
Bandwidth Requirements of PCMp. 96
Delta Modulationp. 97
Signaling Formatp. 99
Time-Division Multiplexingp. 100
Bandwidth Requirements for TDMp. 101
Pulse Shaping and Intersymbol Interferencep. 101
Digital Carrier Modulation Systemsp. 104
Probability and Random Variablesp. 128
Introductionp. 128
Probabilityp. 128
Random Variablesp. 131
Two-Dimensional Random Variablesp. 133
Functions of Random Variablesp. 135
Statistical Averagesp. 137
Special Distributionsp. 138
Random Processesp. 165
Introductionp. 165
Definitions and Notations of Random Processesp. 165
Statistics of Random Processesp. 165
Correlations and Power Spectral Densitiesp. 169
Transmission of Random Processes through Linear Systemsp. 171
Special Classes of Random Processesp. 172
Noise in Analog Communication Systemsp. 202
Introductionp. 202
Additive Noise and Signal-to-Noise Ratiop. 202
Noise in Baseband Communication Systemsp. 203
Noise in Amplitude Modulation Systemsp. 204
Noise in Angle Modulation Systemsp. 208
Optimum Detectionp. 226
Introductionp. 226
Binary Signal Detection and Hypothesis Testingp. 226
Probability of Error and Maximum Likelihood Detectorp. 227
Optimum Detectionp. 229
Error Probability Performance of Binary Transmission Systemsp. 231
Information Theory and Source Codingp. 245
Introductionp. 245
Measure of Informationp. 245
Discrete Memoryless Channelsp. 247
Mutual Informationp. 250
Channel Capacityp. 251
Additive White Gaussian Noise Channelp. 252
Source Codingp. 253
Entropy Codingp. 255
Error Control Codingp. 282
Introductionp. 282
Channel Codingp. 282
Block Codesp. 283
Linear Block Codesp. 283
Cyclic Codesp. 286
Convolutional Codesp. 290
Decoding of Convolutional Codesp. 295
Fourier Transformp. 321
Bessel Functions J[subscript n] ([beta])p. 323
The Complementary Error Function Q(z)p. 325
Indexp. 327
Table of Contents provided by Syndetics. All Rights Reserved.

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