Instructors: Katherine Rogers & Thomas Overbye
Course Syllabus:
•Introduction, fundamentals of electric power
•Electric Power Grid, Conventional Generation
•Wind Power Systems
•Wind/Grid Integration, Introduction to Power Flow
•Distributed Generation Technologies
•Economics of Distributed Resources
•Energy Storage including Electric/Pluggable Hybrid Cars
•The Solar Resource
•Photovoltaic Materials and Systems
•Smart Grid Integration Issues
Lecture Notes:
- Lecture 1: Introduction
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- Lecture 2: Introduction, Basic Power
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- Lecture 3: Complex Power, Three Phase Systems
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- Lecture 4: Balanced Three Phase Systems
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- Lecture 5: Three Phase, Magnetics, Transformers
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- Lecture 6: Transformers, Power Supplies, Harmonics
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- Lecture 7: Power Supplies, Electric Power Industry
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- Lecture 8: Electric Power Industry
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- Lecture 9: Electric Power Operations, Wind
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- Lecture 10: Wind Power
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- Lecture 11: Wind Power, Wind Machines
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- Lecture 12: Wind Machines
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- Lecture 13: Wind Machines and Wind Energy
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- Lecture 14: Wind Energy, Grid Integration
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- Lecture 15: Wind Energy Grid Integration, Per Unit System
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- Lecture 16: Power Flow
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- Lecture 17: Power Flow, Wind Integration, Microturbines
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- Lecture 18: Wind Integration, Microturbines, Biofuel
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- Lecture 19: Biofuel, Hydro
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- Lecture 20: Micro-Hydro, Rates, Engineering Economics
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- Lecture 21: Engineering Economics I
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- Lecture 22: Engineering Economics II
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- Lecture 23: Efficient Energy Systems, Smart Grid
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