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Learning Objectives

By the end of the course, the students will be able to:

  1. Describe a physical process in terms of signals and systems and describe the properties of the system.
  2. Calculate the frequency representations of periodic and aperiodic signals.
  3. Compute the steady state outputs of linear time-invariant systems by solving differential equations, by convolution, and by the Fourier transform.
  4. Design frequency selective filters based on the given system's specifications.
  5. Represent continuous-time signals/systems as discrete-time signals/systems and use digital computers to analyze and design the signals/systems.

Course Outline

The course outline is a guideline to topics that will be discussed in the course, and when they will be discussed. The sequence in which topics wil be taught are subject to change. Instructors transparencies, if applicable, will also be made available here.

Week Topics Readings Handouts Assignment/Quiz Lab (tentative)
Sep. 03, 2012 Introduction to Signals Sections 1.1 - 1.4 Handout # 1H#1-2 - -
Sep. 10, 2012 Introduction to Systems Sections 2.1 - 2.3 Handout # 2H#2-2 HW 1 distributed Lab 1
Sep. 17, 2012 Convolution Integral Sections 3.1 - 3.7 Handout # 3 HW 1 due (Quiz 1) Lab 2 (Lab 1 due)
Sep. 24, 2012 Laplace Transform Sections 6.1 - 6.9 Handout # 4 HW 2 Lab 3 (Lab 2 due)
Oct. 1, 2012 CT Fourier Series Sections 4.1 - 4.6 Handout # 5 HW 2 due Lab 3
Oct. 8, 2012 CT Fourier Transform Sections 5.1 - 5.7 Handout # 6 HW 3 (Quiz 2) Lab 4 (Lab 3 due)
Oct. 15, 2012 Design of CT Filters Sections 7.1 - 7.3 Handout # 7 HW 3 due (Quiz 3) Lab 4
Oct. 16, 2012 Midterm Exam
Oct. 22, 2012 Sampling and Quantization Sections 9.1 - 9.3 Handout # 8 HW 4 Lab 4
Oct. 29, 2012 Convolution Sum Sections 10.1 - 10.5 Handout # 9 - Lab 4
Nov. 05, 2012 Convolution Sum Cont. Sections 10.1 - 10.5 - HW 4 due (Quiz 4) Lab 5 (Lab 4 due)
Nov. 12, 2012 The Z Transform Sections 13.1 - 13.6 Handout # 10 HW 5 Lab 6 (Lab 5 due)
Nov. 19, 2012 DT Fourier Transform Sections 11.1 - 11.7 Handout # 11 HW 5 due (Quiz 5) Lab 6
Nov. 26, 2012 DT Fourier Transform Cont. Sections 11.1 - 11.7 - - Lab 6 due

Review Notes

Animation

This is a nice flash animation explaining how convolution is computed for CT signals. Click on this link to access the animation. You will need a swf player to run this animation.

Addition learning objects designed by Prof. Amir Asif on important concepts in signals and systems can be found at this link.

course_outline.txt · Last modified: 2012/10/30 16:25 by marash