Digital Signal Processing syllabus

2019 PATTERN. This is the 2019 pattern syllabus, the latest SPPU has published on its site for Third Year Electrical Engineering. A 2024 pattern syllabus for this year has not been published there yet, so confirm with your college which pattern applies to you.

303145B · Third Year Electrical Engineering, SPPU 2019 pattern. Every unit, the marks scheme, course outcomes and books, copied from the official syllabus PDF.

303145B3 h/week theoryISE 30 + End-sem 70
06.units
03.credits

Unit-wise syllabus

UNIT I

Discrete time signal and system

6 hours

Analog, Discrete-time and Digital signals, Basic sequences and sequence operations, Discrete time systems, Properties of D. T. Systems and Classification, Linear Time Invariant Systems, impulse response, linear convolution and its properties, properties of LTI systems: stability, causality, Periodic Sampling, Sampling Theorem, Frequency Domain representation of sampling, reconstruction of a band limited Signal, A to D Conversion Process: Sampling, quantization and encoding.

UNIT II

Z and Inverse Z transform

6 hours

Revision of Z-transform, Numerical of Z transform, Inverse Z transform using partial fraction and power series method, Linear constant coefficient difference equations, solution of difference equation, stability and causality using ROC of Z-transform.

UNIT III

Discrete Time Fourier Transform

6 hours

Representation of Sequences by Fourier Transform, Symmetry properties of D. T., F. T. theorems: Linearity, time shifting, frequency shifting, time reversal, differentiation, convolution theorem, Frequency response analysis of first and second order system, steady state and transient response.

UNIT IV

Discrete Fourier Transform

6 hours

Sampling in frequency domain, The Discrete Fourier Transform, Relation with z transform Properties of DFT: Linearity, circular shift, duality, symmetry, Circular Convolution, Linear Convolution using DFT, Effective computation of DFT and FFT, DIT FFT, DIF FFT.

UNIT V

Design of IIR filter

6 hours

Ideal frequency selective filters, Concept of filtering, specifications of filter, IIR filter design from continuous time filters: Characteristics of Butterworth and Chebyshev, impulse invariant and bilinear transformation techniques, Design examples (Butterworth low pass filter) , Basic structures for IIR Systems: direct form, cascade form

UNIT VI

Design of FIR Filter and DSP Applications

6 hours

A) Specifications of properties of commonly used windows, Design Examples using rectangular and hanning windows. Basic Structures for FIR Systems: direct form. Comparison of IIR and FIR Filters. B) Applications: Measurement of magnitude and phase of voltage, current, power, frequency and power factor correction, harmonic Analysis and measurement, applications to machine control, DSP based protective relaying.

Marks and credits

HeadMarksCredit
ISE (mid-semester exam)303
End-semester exam70

Course outcomes

  1. CO1Analyse discrete time signals and systems.
  2. CO2Construct frequency response of LTI system using Fourier Transform.
  3. CO3Design and realize IIR and FIR filters.
  4. CO4Apply concepts of DSP in applications of electrical engineering.

Books

Text books

Reference books

FAQ

How many units are in Digital Signal Processing?

Digital Signal Processing (303145B) has 6 units: Unit I Discrete time signal and system (6 h); Unit II Z and Inverse Z transform (6 h); Unit III Discrete Time Fourier Transform (6 h); Unit IV Discrete Fourier Transform (6 h); Unit V Design of IIR filter (6 h); Unit VI Design of FIR Filter and DSP Applications (6 h).

What is the marks scheme for Digital Signal Processing?

The official Electrical Engineering 2019 pattern syllabus lists mid-semester (ISE) for 30 marks and the end-semester exam for 70 marks, for 3 credits.