EE8591 Digital signal processing (DSP)

         


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EE8591 Digital signal processing (DSP)

UNIT -1
1.Energy and power� signal ,Impulse response **
2. linear, causal, stable, dynamic,�shift,periodic aperiodic
UNIT-2
1.
Z-transform & inverse z-transforms; difference equation.**
2.Stability analysis, frequency response,Convolution.
3.ROC
UNIT-3
1.DFT using FFT�,DIT**
UNIT-4
1.Butterworth Filter**
2.Windowing Techniques,Need and
choice of windows.
UNIT-5
1.DSP Architecture, Addressing modes
2.TMS320C54 DSP processor

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PART-C

1.Compulsory Questions {a case study where the student will have to read and analyse the subject }
mostly asked from unit 2, 5(OR) a situation given and you have to answer on your own

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SYllabuS
UNIT I INTRODUCTION 
Classification of systems: Continuous, discrete, linear, causal, stability, dynamic, recursive,
time variance; classification of signals: continuous and discrete, energy and power;
mathematical representation of signals; spectral density; sampling techniques, quantization,
quantization error, Nyquist rate, aliasing effect.
UNIT II DISCRETE TIME SYSTEM ANALYSIS 
Z-transform and its properties, inverse z-transforms; difference equation – Solution by z￾transform, application to discrete systems - Stability analysis, frequency response – Convolution – Discrete Time Fourier transform , magnitude and phase representation.
UNIT III DISCRETE FOURIER TRANSFORM & COMPUTATION 
Discrete Fourier Transform- properties, magnitude and phase representation - Computation of DFT using FFT algorithm – DIT &DIF using radix 2 FFT – Butterfly
structure.
UNIT IV DESIGN OF DIGITAL FILTERS 
FIR & IIR filter realization – Parallel & cascade forms. FIR design: Windowing Techniques – Need and choice of windows – Linear phase characteristics. Analog filter design – Butterworth and Chebyshev approximations; IIR Filters, digital design using impulse
invariant and bilinear transformation Warping, pre warping.
UNIT V DIGITAL SIGNAL PROCESSORS
Introduction – Architecture – Features – Addressing Formats – Functional modes -

Introduction to Commercial DS Processors.

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