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New.SoftCover International edition. Different ISBN and Cover image but contents are same as US edition. Expediting shipping for all USA and Europe orders excluding PO Box. Excellent Customer Service. N° de réf. du vendeur ABEJUNE24-275248
What are the relations between continuous-time and discrete-time/sampled-data systems, signals, and their spectra? How can digital systems be designed to replace existing analog systems? What is the reason for having so many transforms, and how do you know which one to use? What do s and z really means and how are they related? How can you use the fast Fourier transform (FFT) and other digital signal processing (DSP) algorithms to successfully process sampled signals? Inside, youll find the answers to these and other fundamental questions on DSP. Youll gain a solid understanding of the key principles that will help you compare, select, and properly use existing DSP algorithms for an application. Youll also learn how to create original working algorithms or conceptual insights, design frequency-selective and optimal digital filters, participate in DSP research, and select or construct appropriate hardware implementations. Key FeaturesMATLAB graphics are integrated throughout the text to help clarify DSP concepts. Complete numerical examples clearly illustrate the practical uses of DSP. Uniquely detailed coverage of fundamental DSP principles provides the rationales behind definitions, algorithms, and transform properties. Practical real-world examples combined with a student-friendly writing style enhance the material. Unexpected results and thought-provoking questions are provided to further spark reader interest. Over 525 end-of-chapter problems are included, with complete solutions available to the instructor (168 are MATLAB-oriented).
Présentation de l'éditeur:
What are the relations between continuous–time and discrete–time/sampled–data systems, signals, and their spectra? How can digital systems be designed to replace existing analog systems? What is the reason for having so many transforms, and how do you know which one to use? What do s and z really means and how are they related? How can you use the fast Fourier transform (FFT) and other digital signal processing (DSP) algorithms to successfully process sampled signals? Inside, you′ll find the answers to these and other fundamental questions on DSP. You′ll gain a solid understanding of the key principles that will help you compare, select, and properly use existing DSP algorithms for an application. You′ll also learn how to create original working algorithms or conceptual insights, design frequency–selective and optimal digital filters, participate in DSP research, and select or construct appropriate hardware implementations. Key Features
∗ MATLAB graphics are integrated throughout the text to help clarify DSP concepts. Complete numerical examples clearly illustrate the practical uses of DSP.
∗ Uniquely detailed coverage of fundamental DSP principles provides the rationales behind definitions, algorithms, and transform properties.
∗ Practical real–world examples combined with a student–friendly writing style enhance the material.
∗ Unexpected results and thought–provoking questions are provided to further spark reader interest.
∗ Over 525 end–of–chapter problems are included, with complete solutions available to the instructor (168 are MATLAB–oriented).
Titre : Digital Signal Processing
Éditeur : Wiley
Date d'édition : 1999
Reliure : Couverture souple
Etat : Brand New
Edition : Edition internationale
Vendeur : Romtrade Corp., STERLING HEIGHTS, MI, Etats-Unis
Etat : New. Brand New. Soft Cover International Edition. Different ISBN and Cover Image. Priced lower than the standard editions which is usually intended to make them more affordable for students abroad. The core content of the book is generally the same as the standard edition. The country selling restrictions may be printed on the book but is no problem for the self-use. This Item maybe shipped from US or any other country as we have multiple locations worldwide. N° de réf. du vendeur ABNR-3210
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