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Digital signal processing system design : LabVIEW-based hybrid programming

Author: Nasser Kehtarnavaz
Publisher: Amsterdam ; Boston : Academic Press/Elsevier, ©2008.
Edition/Format:   Print book : CD for computer : Document   Computer File : English : 2nd edView all editions and formats
Summary:

The hybrid programming approach allows the use of previously developed textual programming solutions to be integrated into LabVIEW's environment, providing an easier method for building DSP systems.  Read more...

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Additional Physical Format: Online version:
Kehtarnavaz, Nasser.
Digital signal processing system design.
Amsterdam ; Boston : Academic Press/Elsevier, ©2008
(OCoLC)971459793
Material Type: Document, Internet resource
Document Type: Book, Computer File, Internet Resource
All Authors / Contributors: Nasser Kehtarnavaz
ISBN: 9780123744906 0123744903 9780123745163 0123745160
OCLC Number: 227192088
Description: xv, 325 pages : illustrations ; 24 cm + 1 CD-ROM (4 3/4 in.)
Contents: Introduction --
Digital Signal Processing Hands-On Lab Courses --
Organization --
Software Installation --
Updates --
Bibliography --
Lab --
VIEW Graphical Programming Environment --
Virtual Instruments (VIs) --
Front Panel and Block Diagram --
Icon and Connector Pane --
Graphical Environment --
Functions Palette --
Controls Palette --
Tools Palette --
Building a Front Panel --
Controls --
Indicators --
Align, Distribute, and Resize Objects --
Building a Block Diagram --
Express VI and Function --
Terminal Icons --
Wires --
Structures --
For Loop --
While Loop --
Case Structure --
Math --
Script --
Grouping Data: Array & Cluster --
Debugging and Profiling VIs --
Probe Tool --
Profile Tool --
Bibliography --
Getting Familiar with Lab --
VIEW: Part I --
Building a Simple VI --
VI Creation --
Sub --
VI Creation --
Using Structures and Sub --
VIs --
Create an Array with Indexing --
Debugging VIs: Probe Tool --
Bibliography --
Lab Experiments --
Getting Familiar with Lab --
VIEW: Part II --
Express VIs Versus Regular VIs --
Building a System VI with Express VIs --
Building a System with Regular VIs --
Hybrid Programming --
Math --
Script Feature --
Call Library Function Feature --
Building C DLL Using MS Visual Studio --
Calling C DLL from Lab --
View --
Profile VI --
Bibliography --
Lab Experiments --
Analog-to-Digital Signal Conversion --
Sampling --
Fast Fourier Transform --
Quantization --
Signal Reconstruction --
Bibliography --
Sampling, Quantization, and Reconstruction --
Aliasing --
Fast Fourier Transform --
Quantization --
Signal Reconstruction --
Bibliography --
Lab Experiments --
Digital Filtering --
Digital Filtering --
Difference Equations --
Stability and Structure --
Lab --
VIEW Digital Filter Design Toolkit --
Filter Design --
Analysis of Filter Design --
Fixed-Point Filter Design --
Multi-rate Digital Filter Design --
Bibliography --
FIR /IIR Filtering System Design --
FIR Filtering System --
Design FIR Filter with DFD Toolkit --
Creating a Filtering System VI --
IIR Filtering System --
IIR Filter Design --
Filtering System --
Building Filtering System Using Filter Coefficients --
Filter Design Without Using DFD Toolkit --
Building Filtering System Using Dynamic Link Library (DLL) --
Point-by-Point Processing --
Creating DLL in C --
Calling DLL from Lab --
View --
Bibliography --
Lab Experiments --
Fixed-Point versus Floating-Point --
Q-format Number Representation --
Finite Word Length Effects --
Floating-Point Number Representation --
Overflow and Scaling --
Data Types in Lab --
View --
Bibliography --
Data Type and Scaling --
Handling Data Types in Lab --
View --
Overflow Handling --
Q-Format Conversion --
Creating a Polymorphic VI --
Scaling Approach --
Digital Filtering in Fixed-Point Format --
Design and Analysis of Fixed-Point Digital Filtering System --
Filtering System --
Fixed-Point IIR Filter Example --
Bibliography --
Lab Experiments --
Adaptive Filtering --
System Identification --
Noise Cancellation --
Bibliography --
Adaptive Filtering Systems --
System Identification --
Least Mean Square (LMS) Algorithm --
Waveform Chart --
Shift Register and Feedback Node --
Noise Cancellation --
Lab Experiments --
Frequency Domain Processing --
Discrete Fourier Transform (DFT) and Fast Fourier Transform (FFT) --
Short-Time Fourier Transform (STFT) --
Discrete Wavelet Transform (DWT) --
Signal Processing Toolset --
Bibliography --
Fft, Stft, and Dwt --
FFT Versus STFT --
Property Node --
Dwt --
Bibliography --
Lab Experiments --
DSP Implementation Platform: TMS320C6x Architecture and Software Tools --
Tms320c6x Dsp --
Pipelined CPU --
C64x DSP --
C6x DSK Target Boards --
Board Configuration and Peripherals --
Memory Organization --
DSP Programming --
Software Tools: Code Composer Studio --
Linking --
Compiling --
Bibliography --
Getting Familiar with Code Composer Studio --
Code Composer Studio --
Creating Projects --
Debugging Tools --
Bibliography --
Lab --
VIEW DSP Integration --
Communication with Lab --
VIEW: Real-Time Data Exchange (RTDX) --
Lab --
VIEW DSP Test Integration Toolkit for TI DSP --
Combined Implementation: Gain Example --
Lab --
VIEW Configuration --
DSP Configuration --
Bibliography --
DSP Integration Examples --
CCS Automation --
Digital Filtering --
FIR Filter --
IIR Filter --
Fixed-Point Implementation --
Adaptive Filtering Systems --
System Identification --
Noise Cancellation --
Frequency Processing: FFT --
Bibliography --
DSP System Design: Dual Tone Multi-Frequency (DTMF) Signaling --
Bibliography --
Hybrid Programming of Dual Tone Multi-Frequency System --
DTMF Tone Generator System --
DTMF Decoder System --
Bibliography --
DSP System Design: Software-Defined Radio --
QAM Transmitter --
QAM Receiver --
Ideal QAM Demodulation --
Frame Synchronization --
Decision-Based Carrier Tracking --
Bibliography --
Hybrid Programming of a 4-QAM Modem System --
QAM Transmitter --
QAM Receiver --
Bibliography --
DSP System Design: Cochlear Implant Simulator --
Cochlear Implant System --
Real-Time Implementation --
Pre-Emphasis Filter --
Filterbank for Decomposition and Synthesis --
Envelope Detection --
White Noise Excitation --
Bibliography --
Hybrid Programming of Cochlear Implant Simulator System --
Filter Design --
Bandpass Filter Design --
Lowpass Filter Design --
Real-Time Implementation.
Responsibility: by Nasser Kehtarnavaz ; with laboratory contributions by Namjin Kim and Qingzhong Peng.

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