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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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Full Professor

Damir Jakus

For the past decade, his primary interest has been the optimal operation of energy systems with a high penetration of renewable energy sources, such as wind and solar. His work focuses on power system planning and analysis, and the application of mathematical programming to address modern power system challenges, including electric vehicle integration and renewable energy sources (RES) integration.

Today, he focuses on a broader research portfolio with the main objective of supporting the integration of renewable energy generation and electric vehicles into power systems. By considering electricity markets and optimal grid operation, he aims to facilitate the energy transition and help create a sustainable future.

With a belief that the future of electric power systems lies in our ability to harness data, technology, and collaboration to create an energy landscape that is both sustainable and equitable, his work aims to contribute to this vision, driving forward innovations that will help achieve a cleaner, brighter future for all.

Contact

  • Phone: +385 21 305 807
  • Email: damir.jakus@fesb.hr
Damir Jakus

Expertises

  • O1 - Improvement of flexibility sources models
    Development of accurate and computationally efficient dynamic models of key flexibility sources, such as…
  • O3 -Microgrid flexibility optimization models
    Designing intelligent energy management systems for microgrids that utilize local flexibility resources to…
  • O2 -Advanced control algorithms + AI forecasting tools
    Development and implementation of advanced control algorithms based on model predictive control and artificial…
  • O6 - HIL testing of the developed control algorithms
    Validation of the effectiveness of the developed models, control algorithms, and optimization models through…

Latest news

Upcoming Conference Talks - SPlitech 2026 and ITISE 2026

Members of our FLEXsys reserch team will participate at the ITISE 2026 and SpliTech 2026 conferences, presenting…

May 12, 2026

Grant agreement for the FLEXSYS project signed

On 4 February 2026, the grant agreement for the project **Implementation of flexibility sources and advanced control…

February 4, 2026

Project kick - off

We are pleased to announce that our project FLEXSYS – Implementation of flexibility sources and advanced control…

October 1, 2025

Latest publications

Discover more publications by Damir Jakus

Day-Ahead Electricity Price Forecasting Using Gradient Boosting Models Decision Tree Models - A Case Study of the Croatian Market

May 10, 2026

Research-Papers

Day-Ahead Electricity Price Forecasting Using Gradient Boosting Models Decision Tree Models - A Case Study of the Croatian Market

Participation of Battery Energy Storage in European Electricity Markets: Day-Ahead to Balancing

May 10, 2026

Research-Papers

Participation of Battery Energy Storage in European Electricity Markets: Day-Ahead to Balancing

Single-Site–Driven Synthesis of High-Frequency PV Power for Dispersed Portfolios

May 10, 2026

Research-Papers

Single-Site–Driven Synthesis of High-Frequency PV Power for Dispersed Portfolios

Techno-Economic Analysis of PV Prosumer Profiability Under Croatia’s Evolving Net Billing Scheme

May 10, 2026

Research-Papers

Techno-Economic Analysis of PV Prosumer Profiability Under Croatia’s Evolving Net Billing Scheme

  1. FLEXsys
  2. Research team
  3. Damir Jakus

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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