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Introduction to Spread-Spectrum Communications
Roger L. Peterson, Rodger E. Ziemer, David E. Borth
Prentice Hall, Hardcover, Published March 1995, 700 pages, ISBN 0024316237
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Self-contained, this text offers a thoroughly up-to-date, accurate and insightful examination of spread spectrum system analysis and applications.


Features

Presents one of the most complete treatments of spectrum spreading sequences available, covering the construction of code generators as well as the analysis of such codes for m-sequences, Gold codes and nonlinear codes, among others. Includes a handy, time-saving extensive table giving feedback connections for m-sequence generators.

Contains a comprehensive treatment of the code acquisition and tracking process that includes several means for acquisition and tracking, giving students valuable insight into this practical aspect of implementing spread spectrum systems.

Includes in-depth material on the effects of jamming on spread spectrum communications systems as well as on the use of coding/interleaving to combat the detrimental effects of jamming.

Offers a current look at the design of code division multiple access systems for cellular-mobile communications applications.

Discusses the design of spread spectrum systems for low probability of intercept, offering students insight into design approaches that incorporate this crucial factor.

Provides the most extensive use of pedagogical features of any book in the field.

  • an unmatched array of examples appear throughout, illustrating specific analysis/design situations while reinforcing the text material and making it more easily assimilated.
  • numerous references are included at the end of each chapter.
  • extensive problem sets appear at the end of each chapter. The solutions to all problems from the text are included in the Solutions Manual.

Table Of Contents

1. Basic Digital Communications Concepts.
2. Introduction to Spread Spectrum Systems.
3. Binary Shift Register Sequences for Spread Spectrum Systems.
4. Code Tracking Loops.
5. Initial Synchronization of the Receiver Spreading Code.
6. Performance of Spread Spectrum Systems in Jamming Environments.
7. Performance of Spread-Spectrum Systems with Forward Error Correction.
8. Code Division Multiple Access Digital Cellular Systems.
9. Low Probability of Intercept Methods.
Appendix A: Phase-Lock Loop Fundamentals.
Appendix B: The Gaussian Probability Function.
Appendix C: Power Spectral Densities for Sequences of Random Binary Digits and Random Tones.
Appendix D: Calculation of the Power Spectrum of the Product of Two m-Sequences.
Appendix E: Evaluation of Phase Discriminator Output Autocorrelation Functions and Power.
Appendix F: Numerical Approximations for the Chi-Square Probability Distribution and Marcum's Q-Function.




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