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Digital Signal Processing System Design
LabVIEW-Based Hybrid Programming
The ideal book for quickly developing DSP systems by integrating MATLAB or C code into the LabVIEW graphical programming environment.
Nasser Kehtarnavaz (Author)
9780123744906, Elsevier Science
Paperback / softback, published 12 June 2008
344 pages, Approx. 240 illustrations
23.4 x 19 x 2.2 cm, 0.72 kg
Digital Signal Processing System Design combines textual and graphical programming to form a hybrid programming approach, enabling a more effective means of building and analyzing DSP systems. The hybrid programming approach allows the use of previously developed textual programming solutions to be integrated into LabVIEW’s highly interactive and visual environment, providing an easier and quicker method for building DSP systems. This book is an ideal introduction for engineers and students seeking to develop DSP systems in quick time.
Features:
- The only DSP laboratory book that combines textual and graphical programming
- 12 lab experiments that incorporate C/MATLAB code blocks into the LabVIEW graphical programming environment via the MathScripting feature
- Lab experiments covering basic DSP implementation topics including sampling, digital filtering, fixed-point data representation, frequency domain processing
- Interesting applications using the hybrid programming approach, such as a software-defined radio system, a 4-QAM Modem, and a cochlear implant simulator
Introduction
LabVIEW Programming Environment
Getting Familiar with LabVIEW I
Getting Familiar with LabVIEW II
Analog-To-Digital Signal Conversion
Sampling, Quantization, and Reconstruction
Digital Filtering
FIR/IIR Filtering System Design
Fixed Point vs Floating-Point
Data Type and Scaling
Adaptive Filtering
Adaptive Filtering Systems
Frequency Domain Processing
FFT, STFT and DWT
DSP Implementation Platform: TMS320C6x Architecture and Software Tools
Getting Familiar with Code Composer Studio
LabVIEW DSP Integration
DSP Integration Examples
DSP System Design: Dual-Tone Multi-Frequency (DTMF) Signaling
DSP System Design: Software Defined Radio
Building a 4-QAM Modem
DSP System Design: Cochlear Implant Simulator
Subject Areas: Signal processing [UYS], Telephone technology [TJKT], Communications engineering / telecommunications [TJK], Electricity, electromagnetism & magnetism [PHK]