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Masterthesis: • Modeling of distributed resources for dyn. stability studies in power systems(m/w/x)
Modeling distributed resources for dynamic stability studies in low-inertia power systems using PowerDynamics.jl at research institute. Solid background in electrical/power engineering and good Julia/Python/C++ programming skills required. Option of continued employment after thesis.
Requirements
- Solid background in electrical, control, power engineering or cybernetics
- Good programming skills (Julia, Python, C++)
- Willingness to improve programming skills
- Knowledge of electric power systems
- Knowledge of modeling languages (ModelingToolkit.jl, Modelica, Simulink)
- Knowledge of numeric (time-domain) simulation
- Knowledge of power system dynamic models
- Knowledge of control engineering
Tasks
- Develop PowerDynamics.jl models using ModelingToolkit.jl
- Model dynamic behavior per grid codes
- Conduct dynamic stability studies on low-inertia power systems
- Evaluate simulation results
Education
Languages
Tools & Technologies
Benefits
Purpose-Driven Work
- •Insight into research
Mentorship & Coaching
- •Access to expert networks
Job Security
- •Option of continued employment
Flexible Working
- •Flexible working hours
- •Option to work from home
Modern Office
- •Modern institute building
- •New Work concept
Parking & Commuter Benefits
- •Central location
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Masterthesis: • Modeling of distributed resources for dyn. stability studies in power systems(m/w/x)
Modeling distributed resources for dynamic stability studies in low-inertia power systems using PowerDynamics.jl at research institute. Solid background in electrical/power engineering and good Julia/Python/C++ programming skills required. Option of continued employment after thesis.
Requirements
- Solid background in electrical, control, power engineering or cybernetics
- Good programming skills (Julia, Python, C++)
- Willingness to improve programming skills
- Knowledge of electric power systems
- Knowledge of modeling languages (ModelingToolkit.jl, Modelica, Simulink)
- Knowledge of numeric (time-domain) simulation
- Knowledge of power system dynamic models
- Knowledge of control engineering
Tasks
- Develop PowerDynamics.jl models using ModelingToolkit.jl
- Model dynamic behavior per grid codes
- Conduct dynamic stability studies on low-inertia power systems
- Evaluate simulation results
Education
Languages
Tools & Technologies
Benefits
Purpose-Driven Work
- •Insight into research
Mentorship & Coaching
- •Access to expert networks
Job Security
- •Option of continued employment
Flexible Working
- •Flexible working hours
- •Option to work from home
Modern Office
- •Modern institute building
- •New Work concept
Parking & Commuter Benefits
- •Central location
About the Company
Fraunhofer-Gesellschaft
Industry
Research
Description
Das Unternehmen ist eine der führenden Organisationen für anwendungsorientierte Forschung mit 76 Instituten in Deutschland.
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