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Energy Systems

Energy systems research focuses on the generation and management of power in both traditional electrical systems as well as modern applications of renewable energy.  Examples include electric vehicles, energy storage, microgrids, power systems automation and optimization, and smart grids.  Design problems span everything from individual electric machines to vast interconnected power generation and distribution systems.  Students of this area are recruited in all industries related to energy including electrical, nuclear, wind, solar, and hydroelectric power.

Associated Faculty

Chris Edrington, Sukumar Brahma, Johan Enslin, Ramtin Hadidi, Dingrui LiBehnaz PapariRajendra Singh, Kevin TomsovicG. Kumar Venayagamoorthy

Research Topics

  • Electric Machinery
  • Electric Vehicles
  • Energy Storage
  • Microgrids
  • Power Systems Analysis
  • Power Systems Automation
  • Power Systems Computation
  • Power Systems Dynamic Performance
  • Power System Operations
  • Power System Optimization
  • Power System Security
  • Power System Simulation and Modeling
  • Renewable Energy
  • Smart Grids
ENERGY SYSTEMS
Fall Spring
ECE 6180 Power System Analysis ECE 6160 Smart Grid
ECE 6610 Fundamentals of Solar Energy ECE 6190 Electric Machines and Drives
ECE 6710 Electrification of Transportation ECE 6200 Renewable Energy Penetration on the Power Grid
ECE 8020 Electric Motor Control ECE 6710 Electrification of Transportation
ECE 8070 Computer Methods for Power Systems Analysis ECE 8160 Electric Power Distribution System Engineering
ECE 8620 Real Time Computer Application in Power Systems ECE 8170 Power System Transients
ECE 8640 MicroGrids in Virtual Power Plant ECE 8240 Power System Protection
ECE 8630 Power System Dynamics and Stability ECE 8260 Solar Cells
 
To see a list of recommended classes, please select from the following areas of interest:
 
Electric Vehicles
Microgrids and Smart grids
Power Systems Analysis
Renewable Energy
Power System Simulation and Modeling
Clear

Full syllabi can be found on our Graduate Course Syllabi page

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Energy systems research focuses on the generation and management of power in both traditional electrical systems as well as modern applications of renewable energy.  Examples include electric vehicles, energy storage, microgrids, power systems automation and optimization, and smart grids.  Design problems span everything from individual electric machines to vast interconnected power generation and distribution systems.  Students of this area are recruited in all industries related to energy including electrical, nuclear, wind, solar, and hydroelectric power.

Associated Faculty

Chris Edrington, Sukumar Brahma, Johan Enslin, Ramtin Hadidi, Dingrui LiBehnaz PapariRajendra Singh, Kevin TomsovicG. Kumar Venayagamoorthy

Research Topics

  • Electric Machinery
  • Electric Vehicles
  • Energy Storage
  • Microgrids
  • Power Systems Analysis
  • Power Systems Automation
  • Power Systems Computation
  • Power Systems Dynamic Performance
  • Power System Operations
  • Power System Optimization
  • Power System Security
  • Power System Simulation and Modeling
  • Renewable Energy
  • Smart Grids
ENERGY SYSTEMS
Fall Spring
ECE 6180 Power System Analysis ECE 6160 Smart Grid
ECE 6610 Fundamentals of Solar Energy ECE 6190 Electric Machines and Drives
ECE 6710 Electrification of Transportation ECE 6200 Renewable Energy Penetration on the Power Grid
ECE 8020 Electric Motor Control ECE 6710 Electrification of Transportation
ECE 8070 Computer Methods for Power Systems Analysis ECE 8160 Electric Power Distribution System Engineering
ECE 8620 Real Time Computer Application in Power Systems ECE 8170 Power System Transients
ECE 8640 MicroGrids in Virtual Power Plant ECE 8240 Power System Protection
ECE 8630 Power System Dynamics and Stability ECE 8260 Solar Cells
 
To see a list of recommended classes, please select from the following areas of interest:
 
Electric Vehicles
Microgrids and Smart grids
Power Systems Analysis
Renewable Energy
Power System Simulation and Modeling
Clear

Full syllabi can be found on our Graduate Course Syllabi page

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