Description
Signals: energy and power signals, discrete-time and continuous. Linear systems and convolution. Fourier Transform; complex Fourier series; signal spectral properties and bandwidth. Laplace transform and transient analysis. Transfer functions, block diagrams. Baseband and passband signals, with applications to communications systems.
Prerequisites
- Prerequisite(s): MATH 1005 and enrolment in Communications Engineering.
Conditions and arrangements
- Precludes additional credit for Precludes additional credit for SYSC 3600 and SYSC 3610 .
- Prerequisite(s): MATH 1005 and enrolment in Communications Engineering.
- Lectures three hours a week, problem analysis three hours alternate weeks.
Reference text in its original language
Signals: energy and power signals, discrete-time and continuous. Linear systems and convolution. Fourier Transform; complex Fourier series; signal spectral properties and bandwidth. Laplace transform and transient analysis. Transfer functions, block diagrams. Baseband and passband signals, with applications to communications systems.
- Prerequisite(s): MATH 1005 and enrolment in Communications Engineering.
- Precludes additional credit for Precludes additional credit for SYSC 3600 and SYSC 3610 .
- Lectures three hours a week, problem analysis three hours alternate weeks.
Sources and references
Dates and sources are retained to help you verify the information. Translations are provided to facilitate reading; the official source governs conditions and requirements.
Source reference : https://calendar.carleton.ca/undergrad/courses/SYSC/