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ECEN 3300 - Linear Systems

Required - 5 credit hours
On-Line Course Materials

Catalog Description: Characterization of signals and linear systems in time and frequency domains. Both continuous and discrete time systems are considered. Laboratory exercises consider linear filters and applications using computer simulations. The examples are drawn from communication systems, control systems, and digital signal processing.

Prerequisites: ECEN 2260, Circuits/Electronics 2 and APPM 2360, Linear Algebra and Differential Equations

Course Objectives: ECEN 3300 introduces the student to signals and linear systems in the time and frequency domains. The concepts of impulse response and convolution, frequency response, and transfer functions are discussed. Both continuous and discrete time systems are covered using linear differential and difference equations. Transform methods include Laplace Transforms, Z Transforms, Fourier Series, Fourier Transforms, and Discrete-Time Fourier Transforms. Laboratory experiments reinforce these concepts and explore applications of these concepts to filter design and control and communication systems. The lab experiments also assist in the development of problem-solving abilities, including physical thinking, approximation techniques, and design-oriented analysis.

Textbook: Alan V. Oppenheim, Alan S. Willsky, with S. Hamid Nawab, Signals & Systems , Second Edition, Prentice Hall, 1997.

Topics

Laboratory Component Class schedule 3 hours of lecture, 4 hours lab per week

Contribution of course to meeting the professional component: Contributes 5 semester hours to criterion 4(b) “one and one-half years of engineering topics, consisting of engineering sciences and engineering design appropriate to the student's field of study.”

Relationship of course to program outcomes:
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Prepared by: John Hauser, Peter Mathys (Chair) Dave Meyer, Tom Mullis, Lucy Pao, and by V. Heuring.
June 1, 2005.