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Course Criteria
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3.00 Credits
Signal representation using vector spaces. Linear algebraic techniques for signal modeling and estimation. Optimal detection and estimation algorithms, with applications. Prerequisite/Restriction: Graduate status.
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3.00 Credits
The theory of convex optimization and applications, as applied to engineering. Numerical methods for solving convex optimization problems are presented. Computational work required.
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3.00 Credits
Students study power electronics including steady-state modeling, conduction and switching losses, semiconductor power switches, converter transfer functions, topologies and dynamics, negative feedback, closed-loop transfer functions, controller stability and phase margin, regulator design, and basic magnetics theory and inductor design procedures. Cross list: ECE 5120 Prerequisites: ECE 3410 and ECE 3620 or Graduate Standing
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3.00 Credits
This course introduces the design and control of power converters in electric drive vehicles. It covers detailed analysis, modeling, and design of major system components. Additional coursework is required for those enrolled in the graduate-level course. Prerequisites: ECE 3410, ECE 3620, ECE 3870, or graduate standing Semester(s) Traditionally Offered: Fall
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4.00 Credits
Students receive practical, hands-on experience working with a 500W electric bike powertrain. Labs cover modeling, characterization, design, and fabrication, and culminate in e-bike system integration and demonstration. Additional coursework is required for those enrolled in the graduate-level course. Prerequisite: ECE 3710 or graduate standing, ECE 5150/6150, or instructor permission Semester(s) Traditionally Offered: Spring
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3.00 Credits
Study of space environment and models used for engineering analysis. Topics include considerations for engineering in the space environment such as plasma interactions, debris, chemical reactions, radiation effects, and thermal issues. Prerequisite(s): ECE 5230 (may be taken concurrently) Cross-listed as: ECE 6240 Repeatable for credit: No Grade Mode: Standard
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1.00 - 3.00 Credits
Students will submit a plan for work experience in the industry. The detailed program must have prior approval and a written report is required. Prerequisite/Restriction: Instructor permission. Pass/Fail only.
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3.00 Credits
Modeling, analysis, and design of multi-input, multi-output control systems, including both state space and transfer matrix approaches, with an emphasis on stability. Prerequisite/Restriction: ECE 5310 or MAE 5310. Cross-listed as: MAE 6320.
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3.00 Credits
This course covers spacecraft attitude dynamics and controls, including spin stabilized, three axis, dual spin modes, and attitude determination techniques. Prerequisite/Restriction: ECE 5310 or MAE 5310 Cross-listed as: MAE 6340
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3.00 Credits
Applications of spacecraft attitude control concepts including attitude control and determination sensors, actuators, and algorithms. Crosslisted as: MAE 6345 Prerequisites: ECE 6340 or MAE 6340
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