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Implementation of flexibility sources and advanced control algorithms to support modern power systems with a high share of renewable energy sources

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Lecturer

Višnja Troskot

Lecturer in the field of electrical power engineering at the Department of Electrical Engineering within the University Department of Professional Studies at the University of Split. As an author and co-author, she has participated in the publication of six professional papers, five of which she presented at international conferences. She is responsible for three courses in the field of electrical machines and electric motor drives, as well as the course Electric Lighting, and serves as a mentor for Team Projects and Professional Practice in electrical power engineering at her home institution.

She holds an Energy Advisor certificate and an AutoCAD Associate certificate. She has collaborated on around ten major electrical power installation projects involving the reconstruction of public lighting systems in municipalities and cities across the Republic of Croatia, worked on the project Voltage–Frequency Control of a Squirrel-Cage Induction Machine Using the Direct Self-Control Method at the University of Bochum, and served as an assistant on the project Promotion of Energy Efficiency in Croatia.

Contact

  • Email: visnja.troskot@oss.unist.hr
Višnja Troskot

Expertises

  • O1 - Improvement of flexibility sources models
    Development of accurate and computationally efficient dynamic models of key flexibility sources, such as…
  • O2 -Advanced control algorithms + AI forecasting tools
    Development and implementation of advanced control algorithms based on model predictive control and artificial…
  • O3 -Microgrid flexibility optimization models
    Designing intelligent energy management systems for microgrids that utilize local flexibility resources to…
  1. FLEXsys
  2. Research team
  3. Višnja Troskot

Implementation of flexibility sources and advanced control algorithms to support modern power systems with a high share of renewable energy sources.

  • O1 - Improvement of flexibility sources models
  • O2 - Advanced control algorithms + AI forecasting tools
  • O3 - Microgrid flexibility optimization models
  • O4 - Hybrid converter prototype development
  • O5 - Dynamic stability transient analysis - EMT + AI
  • O6 - HIL testing of the developed control algorithms
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