I

Basic Principles

 

1 The Discrete Fourier Transform Bryan Usevitch

Introduction

DFT Theory

Properties of the DFT

Fast Fourier Transforms

Bibliography

 

2 Pulse Code Modulation Leon W. Couch II

Introduction

Generation of PCM

Percent Quantizing Noise

Practical PCM Circuits

Bandwidth of PCM

Effects of Noise

Nonuniform Quantizing: µ-Law and A-Law Companding

Example: Design of a PCM System

References

Further Reading

 

3 Baseband Signaling and Pulse Shaping Michael L. Honig and Melbourne Barton

Communication System Model

Intersymbol Interference and the Nyquist Criterion

Nyquist Criterion with Matched Filtering

Eye Diagrams

Partial-Response Signaling

Additional Considerations

Examples

References

Further Reading

 

4 Complex Envelope Representations for Modulated Signals Leon W. Couch II

Introduction

Complex Envelope Representation

Representation of Modulated Signals

Generalized Transmitters and Receivers

Spectrum and Power of Bandpass Signals

Amplitude Modulation

Phase and Frequency Modulation

QPSK Signaling

OFDM Signaling

Reference

Further Reading

 

5 Modulation Methods Gordon L. Stüber

Introduction

Basic Description of Modulated Signals

Quadrature Amplitude Modulation

Phase Shift Keying and π/4-QDPSK

Continuous Phase Modulation, Minimum Shift Keying, and GMSK

Orthogonal Frequency Division Multiplexing

Summary and Conclusions

References

Further Reading

 

6 Error Control Coding Thomas E. Fuja

Introduction

Block Codes

Convolutional Codes

Turbo Codes

Low-Density Parity Check Codes

Coding and Bandwidth-Efficient Modulation

Automatic Repeat Request

References

 

7 Information Theory Emmanuel Abbe, Bixio Rimoldi, and Rüdiger Urbanke

Introduction

The Communication Problem

Source Coding for Discrete-Alphabet Sources

Universal Source Coding

Rate Distortion Theory

Channel Coding

Simple Binary Codes

References

Further Reading

 

8 Rayleigh Fading Channels Bernard Sklar

Introduction

The Challenge of a Fading Channel

Mobile Radio Propagation: Large-Scale Fading and Small-Scale Fading

Signal Time-Spreading Viewed in the Time-Delay Domain: Figure 8.1, Block 7—The Multipath Intensity Profile

Signal Time-Spreading Viewed in the Frequency Domain: Figure 8.1, Block 10—The Spaced-Frequency Correlation Function

Typical Examples of Flat Fading and Frequency-Selective Fading Manifestations

Time Variance Viewed in the Time Domain: Figure 8.1, Block 13—The Spaced-Time Correlation Function

Time Variance Viewed in the Doppler-Shift Domain: Figure 8.1, Block 16—The Doppler Power Spectrum

Analogy between Spectral Broadening in Fading Channels and Spectral Broadening in Digital Signal Keying

Degradation Categories due to Time Variance, Viewed in the Doppler-Shift Domain

Mitigation Methods

Summary of the Key Parameters Characterizing Fading Channels

The Viterbi Equalizer as Applied to GSM

The Rake Receiver Applied to Direct-Sequence Spread-Spectrum (DS/SS) Systems

Example of a DS/SS System Using a Rake Receiver

Conclusion

References

 

9 Channel Equalization John G. Proakis

Characterization of Channel Distortion

Characterization of Intersymbol Interference

Linear Equalizers

Decision-Feedback Equalizer

Maximum-Likelihood Sequence Detection

Conclusions

References

Further Reading

 

10 Echo Cancellation Giovanni Cherubini

Introduction

Echo Cancellation for Pulse–Amplitude Modulation Systems

Echo Cancellation for Quadrature Amplitude Modulation Systems

Echo Cancellation for Orthogonal Frequency Division Multiplexing Systems

Summary and Conclusions

References

Further Reading

 

11 Synchronization of Communication Receivers Costas N. Georghiades and Erchin Serpedin

Introduction

Carrier Synchronization

Carrier Phase Synchronization

Carrier Acquisition for QAM Constellations

Symbol Synchronization

To Browse Further

Frame Synchronization

Synchronization of MIMO Systems

References

Further Reading

 

12 Pseudonoise Sequences Tor Helleseth and P. Vijay Kumar

Introduction

m Sequences

The q-ary Sequences with Low Autocorrelation

Families of Sequences with Low Cross-Correlation

Aperiodic Correlation

Other Correlation Measures

References

Further Reading

 

13 Introduction to Spread Spectrum Systems Dinesh Rajan

Introduction

Direct Sequence Spread Spectrum

Frequency Hopping Spread Spectrum

Applications of Spread Spectrum

Conclusions

References

 

14 Signal Space Rodger E. Ziemer

Introduction

Fundamentals

Application of Signal Space Representation to Signal Detection

Application of Signal Space Representation to Parameter Estimation

Miscellaneous Applications

References

Further Reading

 

15 Optimum Receivers Geoffrey C. Orsak 279

Introduction

Preliminaries

Karhunen–Loève Expansion

Detection Theory

Performance

Signal Space

Standard Binary Signaling Schemes

M-ary Optimal Receivers

More Realistic Channels

Dispersive Channels

References

Further Reading

 

16 MIMO Systems for Diversity and Interference Mitigation Marco Chiani

Advantages of Multiple Antennas Systems

SISO Systems

MIMO Channel Models

Diversity Techniques

SIMO with Interference (Optimum Combining, MMSE Receivers)

Acronyms

References

 

17 High-Throughput MIMO Systems Marco Chiani

Introduction

Capacity of Fixed MIMO Channels

Capacity of MIMO Fading Channels

MIMO Systems for Spatial Multiplexing

Multiuser MIMO

Other Applications of MIMO: Cooperative Communications, Virtual MIMO, Distributed Antenna Systems

Acronyms

References

 

18 Digital Communication System Performance Bernard Sklar

Introduction

Bandwidth and Power Considerations

Example 1: Bandwidth-Limited Uncoded System

Example 2: Power-Limited Uncoded System

Example 3: Bandwidth-Limited and Power-Limited Coded System

Example 4: Direct-Sequence Spread-Spectrum Coded System

Conclusion

Appendix A: Received Eb/N0 Is Independent of the Code Parameters

Appendix B: MATLAB® Program Qinv.m for Calculating Q−1(x)

References

Further Reading

 

19 Fundamental Limitations on Increasing Data Rate in Wireless Systems Donald C. Cox

Introduction

Increasing Data Rate by Increasing Bandwidth

Changing Modulation Levels

Multiple-Input, Multiple-Output

Changing Carrier Frequency Band and Base Station Antenna Height

Other Ways to Increase Data Transmission Rate

Line-of-Sight Wireless Link Considerations

Discussion

Acknowledgments

References

 

20 Interference and Its Impact on System Capacity Bijan Jabbari and Alireza Babaei

Introduction

Interference in Wireless Networks

Interference Modeling

Interference Statistics and Capacity

Applications in Cognitive Radio Networks

Conclusions

References

 

21 Cell Design Principles Michel Daoud Yacoub

Introduction

Cellular Principles

Performance Measures and System Requirements

System Expansion Techniques

Basic Design Steps

Traffic Engineering

Cell Coverage

Interference

Conclusions

References

Further Reading

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