ELEC6218 · Signal Processing Analog & Digital Filter Design
Signal Processing · Lecture notes Prof. Çelik
ELEC6218 · Signal Processing
Module Notes & Slides

Analog & Digital Filter Design

A guided introduction to signals and systems, followed by the practical design of analog, FIR and IIR filters.

ELEC6218 module cover artwork
InstructorProf. Abdulkadir Çelik (https://akadircelik.com) ModuleELEC6218 CoverageLectures 1–8: foundations of signals & systems, then analog and digital filter design
Module Contents

Lectures

Choose a lecture below. Each page brings the notes, worked examples and MATLAB activities together; the buttons open the matching slides, podcast and quiz when those files are available.

A simple way to study each lecture

Before class: read the learning outcomes and listen to the podcast or scan the slides. During your study: pause at each worked example, predict the next step, and then use the MATLAB plot to check what the equations mean. Afterwards: try the problems without opening the solutions, then use the quiz to find any topic that needs another look.

01
Introduction to Signals & Systems

Learn how to describe signals and systems, test their main properties, and use convolution to find the output of an LTI system.

02
The Fourier Transform Toolkit

Connect transfer functions, poles, zeros and stability to the main Fourier representations, then see how the DFT and FFT make frequency analysis practical.

03
Sampling, Quantization & Reconstruction

Follow a signal from continuous time to samples and back again. The lecture explains aliasing, quantization noise and practical reconstruction.

04
The z-Transform

Use the discrete-time partner of the Laplace transform to solve difference equations and read causality, stability and frequency response from the (z)-plane.

05
Analog Filter Design

Design Butterworth, Chebyshev and elliptic prototypes, then transform one low-pass design into high-pass, band-pass or band-stop form.

06
Digital Filter Design

Compare FIR and IIR filters in terms of structure, phase, stability, order and computational cost before choosing a design route.

07
FIR Filter Design

Build linear-phase FIR filters using symmetry, the window method and Parks–McClellan minimax design, and compare the trade-offs.

08
IIR Filter Design

Turn a well-understood analog prototype into a digital IIR filter using impulse invariance or the bilinear transform.