1. Continous and Discrete Signals - Basic Concepts. 2. Continous and Discrete Time Systems - Basic Concepts. 3. Analysis of a Leniar Systems in The Time Domain. 4.the Laplace Transform. 5. The Fourier Transform and Frequency Response. Modulation And Multiplexing. 6. The Z Transform and Its Use in Discrete Time Systems. Difference Equations. 7. Fourier Transform and Frequency Response of Discrete Signals And Systems. 8. State-space Description of Linear Systems. Physical System Modeling, Linearization. 9. Stability of Linear Time-invariant Systems. 10. Feedback Systems# Basic Properties, Stability, Pid Controllers.

Faculty: Electrical and Computer Engineering
|Undergraduate Studies

Pre-required courses

(44105 - Theory of Electronic Circuits and 104214 - Fourier Series and Integral Transforms) or (44105 - Theory of Electronic Circuits and 104221 - Complex Functions and Integral Transform and 104223 - Partial Differen.equa.and Fourier Series) or 44191 - Control Systems 1 or (104122 - Complex Function Theory 1 and 104276 - Introduction to Functional Analysis and 104285 - Ordinary Differential Equations A and 114071 - Physics 1m)


Course with no extra credit

44130 - Signals and Systems


Course with no extra credit (contained)

44195 - Int. to Power Sys. and Smart Grid Basics


Semestrial Information