Signals and systems using Matlab
Idioma: Español Detalles de publicación: Estados Unidos of America, Elsevier Inc., 2019Edición: Third editionDescripción: 816 páginas 23x19 cmTipo de contenido:- text
- no mediado
- volumen
- 9780128142042
- 621.3192 CHAs
Tipo de ítem | Biblioteca actual | Colección | Signatura topográfica | Copia número | Estado | Fecha de vencimiento | Código de barras | |
---|---|---|---|---|---|---|---|---|
Libros | Biblioteca General En biblioteca | Fac de Sistemas y Telecomunicaciones - Carrera de Electrónica y Automatización | 621.3192 CHAs (Navegar estantería(Abre debajo)) | Ej. 1 | Disponible | BG0025278 |
From the ground up.--
Examples of signal processing applications.--
Implementation of digital signal por
Continuous or discrete?.--
Complex or real?.--
Soft introduction to MATLAB.--
Theory and applications of continuous-time Signals and systems.--
Continuous-time signals.--
Clasification of time-dependent signals.--
Continuous-time signals.--
Representation of continuous-time signals using basic signals.--
Time scaling. Modulation, Windowing and integration.--
Special signals - the sampling and the sinc signals.--
What have we acomplished? Where do we go from here?
Continuous-time systems.--
Systems concept and classification.--
Linear Time-Invariant (LTI) Continuous-time systems.--
The convolution integral.--
Causality.--
Bounded input-Bounded output stability.--
Wath have we accomplished? Where do we go from here?.--
The laplace transform.--
The two-sided laplace transform.--
The one-sided laplace transform.--
Properties of the-sided laplace transform.--
Inverse laplace transform.--
The transfer function of LTI systems.--
Analysis of LTI systems represented by differential equiations.--
Inverse of two-sided laplace transforms.--
What have we accomplished? Where Do we Go from here?.--
Frequency analysis: the fourier series.--
Eigenfunctions revisited.--
Complex exponential fourier series.--
Response of LTI systems to periodic signals.--
Operations using fourier series.--
What have we accomplished? Where do we go from here?.--
Frequency analysis: the fourier transform.--
From the fourier series to the fourier transform.--
Existence of the fourier transform.--
Fourier transforms from the laplace transform.--
Linearity, inverse proportionality and duality.--
Spectral representation.--
Convolution and filtering.--
Additional properties.--
What have we accomplished? What is next?.--
Application of Laplace anaalysis to control.--
System connections and block diagrams.--
Application to classical control.--
What have we accomplished? What is next?.--
Fourier analysis in comunications and filtering.--
Application to conmunications.--
Analog filtering.--
What have we accomplished? What is next?.--
Theory and applications of discrete-time signals and systems.--
Sampling theory.--
Uniform sampling.--
Practical aspects of sampling.--
Application to digital conmunications.--
What have we accomplished? Where do we go from here?.--
Discrete-time signals ans systems.--
Discrete-time signals.--
Discrete-time systems.--
Two-dimensional discrete signals and systemss.--
What have we accomplished? Where do we go from here?.--
The Z-transform.--
Laplace transform of sampled signals.--
Two-sided Z-transform.--
One-sided Z-transform inverse.--
State variable representation.--
Two-Dimensional Z-transform.--
What have we accomplished? Where do we go from here?.--
Discrete feourier analysis.--
The discrete-time fourier transform (DTFT).--
Fourier series of discrete-time perioodic signals.--
The discrete fourier transform (DFT)
Two-dimesional discrete transforms.--
What have we accomplished? Where do we go from here?.--
Introduction to the design of discrete filters.--
Frequency selective discrete filters.--
Filter specifications.--
IIR filter design.--
FIR filter design.--
Realization of discrete filters.--
Two-dimesnional filtering of images.--
What have we accomplished? Where do we go from here?.--
Useful formulas.--
Trigonometric relations.--
Calculus.
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