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Course Criteria
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3.00 Credits
Review of electromagnetic theory required to undertake analysis and design of power equipment. Experimental, analog, and digital field estimation techniques. Case studies in electric and magnetic fields such as cable and bushing design, problems of gas bus systems, electrostatic precipitation, magnetic flux penetration, eddy currents, losses, shielding, generation of torque. Prerequisites/Corequisites: Prerequisites: ECSE 2100, EPOW 4010, and EPOW 4020 or their equivalents. When Offered: Fall term annually. Credit Hours: 3
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3.00 Credits
Analysis and computation of electrical transients in lumpy and distributed power circuits; switching surges, lightning surges, traveling waves. Impact of surges on terminal equipment. Insulation coordination; system protection; design of electric power apparatus and systems to operate reliably and economically in a transient environment. When Offered: Fall term annually. Credit Hours: 3
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3.00 Credits
General theory of kinematics and dynamics of machines and structures with emphasis on power generating and distributing equipment. Special topics include basic concepts of vibration phenomena in mechanical systems, dynamic behavior of turbine-generator sets, self-excited vibrations in mechanical systems, earthquakes, circuit breaker linkages, short circuit forces on windings and bus structures. Prerequisites/Corequisites: Prerequisite: permission of instructor. When Offered: Spring term annually. Credit Hours: 3
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3.00 Credits
The business aspects of electric utilities are highlighted, including source of funds, components of cost for generation, transmission, and distribution, the rate setting process, planning for future loads, least-cost system planning, and operation and economics of conservation. The course features the changing structure of electric utilities in the new regulatory environment and competition in this energy sector, especially for generation. When Offered: Spring or summer term. Credit Hours: 3
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3.00 Credits
Applies the student's knowledge of power engineering to the solution of large problems by computer methods. Treats matrix techniques, load-flow analysis, network building, short circuit studies, numerical integration, and finite element analysis as it applies to power systems and power apparatus. Prerequisites/Corequisites: Prerequisite: EPOW 6810 or equivalent or permission of instructor. When Offered: Spring term annually. Credit Hours: 3
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0.00 Credits
Credit Hours: 0
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1.00 - 6.00 Credits
Credit Hours: 1 to 6
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3.00 Credits
State of the art in selected important areas of electric power systems such as ultra-high-voltage transmission, generator excitation systems, circuit interruption technologies, HVDC converters, frequency and tie line control, and power system reliability. When Offered: Spring or summer term. Credit Hours: 3
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3.00 Credits
Active participation in a semester-long project, under the supervision of a faculty adviser. A Professional Project often serves as a culminating experience for a Professional Master's program but, with departmental or school approval, can be used to fulfill other program requirements. With approval, students may register for more than one Professional Project. Professional Projects must result in documentation established by each department or school, but are not submitted to the Graduate School and are not archived in the library. Grades of A, B, C, or F are assigned by the faculty adviser at the end of the semester. If not completed on time, a formal Incomplete grade may be assigned by the faculty adviser, listing the work remaining to be completed and the time limit for completing this work.
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1.00 - 9.00 Credits
Active participation in a master's-level project under the supervision of a faculty adviser, leading to a master's project report. Grades of IP are assigned until the master's project has been approved by the faculty adviser. If recommended by the adviser, the master's project may be accepted by the Office of Graduate Education to be archived in the Library. Grades will then be listed as Credit Hours: 1 to 9
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