This book covers the basic theoretical, algorithmic and real-time aspects of digital signal processing (DSP). Detailed information is provided on off-line, real-time and DSP programming and the reader is effortlessly guided through advanced topics such as DSP hardware design, FIR and IIR filter design and difference equation manipulation.
This book covers the basic theoretical, algorithmic and real-time aspects of digital signal processing (DSP). Detailed information is provided on off-line, real-time and DSP programming and the reader is effortlessly guided through advanced topics such as DSP hardware design, FIR and IIR filter design and difference equation manipulation.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dr Patrick Gaydecki is a Reader in the Sensing, Imaging and Signal Processing Group within the School of Electrical and Electronic Engineering at the University of Manchester. His research interests include the design of real-time and offline digital signal processing systems, instrumentation for nondestructive testing and monitoring, and software development for audio and biomedical applications.
Inhaltsangabe
* Charter 1: Definitions and applications of digital signal processing * Charter 2: A linear systems toolbox * Charter 3: An introduction to high-level computer programming using Delphi * Charter 4: Analysis of simple electrical systems using complex impedance, differential and difference equations * Charter 5: Introduction to convolution and correlation * Charter 6: Fourier analysis * Charter 7: Discrete Fourier properties and processing * Charter 8: Introduction to Laplace space and the Laplace transform * Charter 9: An introduction to z-space, the z-transform and digital filter design * Charter 10: Signal sampling, analog to digital and digital to analog conversion * Charter 11: The design and implementation of finite impulse response filters * Charter 12: The design and implementation of infinite impulse response filters * Charter 13: Rudiments of adaptive filters * Charter 14: The design and programming of real-time DSP systems Part 1 * Charter 15: The design and programming of real-time DSP systems Part 2 * Charter 16: Concluding remarks
* Charter 1: Definitions and applications of digital signal processing * Charter 2: A linear systems toolbox * Charter 3: An introduction to high-level computer programming using Delphi * Charter 4: Analysis of simple electrical systems using complex impedance, differential and difference equations * Charter 5: Introduction to convolution and correlation * Charter 6: Fourier analysis * Charter 7: Discrete Fourier properties and processing * Charter 8: Introduction to Laplace space and the Laplace transform * Charter 9: An introduction to z-space, the z-transform and digital filter design * Charter 10: Signal sampling, analog to digital and digital to analog conversion * Charter 11: The design and implementation of finite impulse response filters * Charter 12: The design and implementation of infinite impulse response filters * Charter 13: Rudiments of adaptive filters * Charter 14: The design and programming of real-time DSP systems Part 1 * Charter 15: The design and programming of real-time DSP systems Part 2 * Charter 16: Concluding remarks
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