06EE52 Signals and Systems syllabus for EE


Part A
Unit-1 Introduction 10 hours

Definitions of signals and a system, classification of signals, basic operations on signals. elementary signals viewed as interconnections of operations, properties of systems.

Unit-2 Time – domain representations for LTI systems 10 hours

Convolution, impulse response, properties, solution of differential and difference equations, block diagram representation.

Unit-3 Fourier representation of periodic signals 8 hours

Introduction, Fourier representation of continuous-time periodic signals (FS), properties of continuous-time Fourier series (excluding derivation of defining equations for CTFS), Fourier representation of discrete-time periodic signals, properties of discrete-time Fourier series (DTFS)

Unit-4 The Continuous-Time Fourier Transform 4 hours

Representation of a periodic signals: continuous-time Fourier transform (FT), Properties of continuous-time Fourier transform

Part B
Unit-5 The Discrete-Time Fourier Transform 4 hours

Representations of periodic signals: The discrete-time Fourier transform (DTFT), Properties of DTFT.

Unit-6 Application of Fourier representations 8 hours

Frequency response of LTI systems, solution of differential and difference equations using system function, sampling of continuous time signals and signal reconstruction(only low pass).

Unit-7 Z Transforms 8 hours

Introduction, Z-transform, properties of ROC properties of Z-transforms, inversion of Z-transforms methods - power series and partial expansion, Transforms analysis of LTI systems, transfer function, stability and causality, unilateral Z-transform and its application to solve difference equations

Last Updated: Tuesday, January 24, 2023