Communication System Design Using DSP Algorithms: With Laboratory Experiments for the TMS320C30: Applications of Communications Theory
Autor Steven A. Tretteren Limba Engleză Paperback – 31 aug 1995
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Specificații
ISBN-13: 9780306450327
ISBN-10: 0306450321
Pagini: 193
Ilustrații: XVII, 193 p. With online files/update.
Dimensiuni: 210 x 279 x 13 mm
Greutate: 0.55 kg
Ediția:1995
Editura: Springer Us
Colecția Springer
Seria Applications of Communications Theory
Locul publicării:New York, NY, United States
ISBN-10: 0306450321
Pagini: 193
Ilustrații: XVII, 193 p. With online files/update.
Dimensiuni: 210 x 279 x 13 mm
Greutate: 0.55 kg
Ediția:1995
Editura: Springer Us
Colecția Springer
Seria Applications of Communications Theory
Locul publicării:New York, NY, United States
Public țintă
ResearchCuprins
1. Brief Overview of the Hardware and Software Tools.- 2. Learning to Use the Hardware and Software Tools by Generating a Sine Wave.- 3. Digital Filters.- 4. The FFT and Power Spectrum Estimation.- 5. Amplitude Modulation.- 6. Double-Sideband Suppressed-Carrier Amplitude Modulation and Coherent Detection.- 7. Single-Sideband Modulation and Frequency Translation.- 8. Frequency Modulation.- 9. Pseudo-Random Binary Sequences and Data Scramblers.- 10. Introduction to the RS-232C Protocol and a Bit-Error Rate Tester.- 11. Digital Data Transmission by Baseband Pulse Amplitude Modulation (PAM).- 12. Fundamentals of Quadrature Amplitude Modulation.- 13. QAM Receiver I. General Description of Complete Receiver Block Diagram and Details of the Symbol Clock Recovery and Other Front-End Subsytems.- 14. QAM Receiver II. The Passband Adaptive Equalizer and Carrier Recovery System.- 15. Echo Cancellation for Full-Duplex Modems.- 16. Suggestions for Additional Experiments.- Appendix A. Communicating between the PC and EVM.- A.1. Overview of the PC/EVM Interface.- A.1.1. The Data Transfer Register.- A.1.2. EVM Interrupts to the TMS320C30.- A.1.3. Flags that Indicate to the PC when the TMS320C30 has Read or Written the Transfer Register.- A.1.4. Resetting the EVM.- A.2. A Command Passing Protocol.- A.3. Using DMA for Data Transfers.- A.3.1. TMS320C30 to PC Data Transfers.- A.3.2. PC to TMS320C30 Data Transfers.- A.3.3. Turning off the DMA.- A.4. Laboratory Experiments on Transferring Data between the TMS320C30 and PC.- A.4.1. Functions the TMS320C30 Program Must Perform.- A.4.2. Functions the PC Program Must Perform.- A.4.3. Testing Your PC and TMS320C30 Software.- Appendix B. Generating Gaussian Random Numbers.- Appendix C. A TTL/RS-232C Interface for Serial Port 1.- Appendix D. Equipment List for Each Station.- Appendix E. Software and Directory Structure.- References.- I. List of Manuals.- A. Manuals for the TMS320C30 Tools.- B. Manuals for Borland C++.- C. Assorted Manuals for Lab Test Equipment.- II. Selected Reference Books and Papers.- A. DSP Laboratory Books Using DSP Hardware.- B. DSP Laboratory Books Using Software Simulation.- C. Books on Digital Signal Processing.- D. Books and Papers on Communications.- E. Books and Papers on Error-Correcting Codes.
Textul de pe ultima copertă
Designed for senior electrical engineering students, this textbook explores the theoretical concepts of digital signal processing and communication systems, using practical laboratory experiments with real-time DSP hardware. Originally designed with older Texas Instruments models in mind, this new edition updates the experiments to incorporate the TMS320C6713TM DSK, while remaining relevant for other DSP boards. The C6713TM DSK is now the preferred board in educational DSP labs; this edition stays current with these new changes in the field.
The primary focus of this book is communication systems, including algorithms that are particularly suited to DSP implementation. Software and hardware tools are introduced, as well as FIR and IIR digital filters and the FFT. This book also discusses modulators and demodulators for classical analog modulation methods such as amplitude modulation (AM), double-sideband suppressed-carrier amplitude modulation (DSBSC-AM), single sideband modulation (SSB), and frequency modulation (FM).
The second half of the book explores digital communication methods leading to the implementation of a telephone-line modem. This new edition also incorporates a comprehensive discussion of Orthogonal Frequency Division Multiplexing (OFDM), which is particularly pertinent as the world is heavily turning towards using wireless wideband communication. Methods for adaptive equalization, carrier recovery, and symbol clock tracking are presented as well, with suggestions for additional experiments.
Steven A. Tretter received the BSEE degree from the University of Maryland in 1962 and the PhD degree in Electrical Engineering from Princeton University in 1966. He is currently an Associate Professor in the Department of Electrical and Computer Engineering at the University of Maryland, College Park. His areas of expertise include communication systems, digital signal processing, anderror correcting codes. He has been a consultant to several telephone-line modem manufacturers since 1970. Many of the algorithms presented in this book were developed for and are used in commercial DSP-based modems. He is presently a consultant to a group at Texas Instruments in Germantown, MD, creating optimized DSP code for wireless OFDM systems.
Cover design by Susanne Van Duyne (Trade Design Group)
The primary focus of this book is communication systems, including algorithms that are particularly suited to DSP implementation. Software and hardware tools are introduced, as well as FIR and IIR digital filters and the FFT. This book also discusses modulators and demodulators for classical analog modulation methods such as amplitude modulation (AM), double-sideband suppressed-carrier amplitude modulation (DSBSC-AM), single sideband modulation (SSB), and frequency modulation (FM).
The second half of the book explores digital communication methods leading to the implementation of a telephone-line modem. This new edition also incorporates a comprehensive discussion of Orthogonal Frequency Division Multiplexing (OFDM), which is particularly pertinent as the world is heavily turning towards using wireless wideband communication. Methods for adaptive equalization, carrier recovery, and symbol clock tracking are presented as well, with suggestions for additional experiments.
Steven A. Tretter received the BSEE degree from the University of Maryland in 1962 and the PhD degree in Electrical Engineering from Princeton University in 1966. He is currently an Associate Professor in the Department of Electrical and Computer Engineering at the University of Maryland, College Park. His areas of expertise include communication systems, digital signal processing, anderror correcting codes. He has been a consultant to several telephone-line modem manufacturers since 1970. Many of the algorithms presented in this book were developed for and are used in commercial DSP-based modems. He is presently a consultant to a group at Texas Instruments in Germantown, MD, creating optimized DSP code for wireless OFDM systems.
Cover design by Susanne Van Duyne (Trade Design Group)
Caracteristici
Completely updated for TM13S320C6 DSK board New chapter on OFDM Third edition of popular textbook