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uncertainties. -Develop scalable smart control strategies for HVAC and microgrid systems in nearly zero-energy buildings and campus infrastructures. -Incorporate neurobiological and psychological dimensions
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for Languages) essential Strong programming skills in scientific computing languages (e.g. Python, C++) Solid knowledge of microgrid concepts and distribution network operation Knowledge of electric vehicle
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applications and optimization in the project area. Preferred profile: Good teamwork skills and motivation to use computational applications, such as software and algorithms for optimizing microgrids/energy
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be finalised by July 2026. Supported Areas for START Engineering Energy Resilience: Power electronic converters for distributed energy resources and microgrids; High voltage DC transmission and
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their integration, distribution, protection, storage, microgrids, electric machines, power conversion, and battery technologies. Preference will be given to candidates with a strong publication record who