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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

Marin Despalatović

Marin Despalatović enrolled in the study of Electrical Engineering in 1995 at the University of Split (Faculty of Electrical Engineering, Mechanical Engineering and Naval Architecture (FESB)), where he received a dipl. ing. title (equivalent to the M.S.E.E.) in 2000. In 2009, he defended his PhD thesis entitled "Synchronous hydro-generator parameter identification based on on-line measurements" under the supervision of Prof. Božo Terzić.
Since 2001, he has been employed at University of Split (FESB, https://www.fesb.unist.hr), where he has gone through all phases of associate research titles of junior assistant, assistant and senior assistant, followed by the academic tenure position of assistant professor, associate professor, and since January 2022 full professor. From 2022 to 2024, he held the position of the Head of the Department of Electrical Power Engineering.
His research and professional work interests are reflected through participation as a collaborator in the following projects:
- 2020 – 2024: Power system disturbance simulator and nonsinusoidal voltages and currents calibrator (SIMPES, IP-2019-04-7292, HRZZ)
- 2019 – 2023: Metrology infrastructure for support of the intelligent power grid (INTELIGRID, IP-2019-04-7354, HRZZ)
- 2015 – 2019: Smart Grid metrology infrastructure (SMAGRIMET, IP-2014-09-8826, HRZZ)
- 2017 – 2021: Active system for electric energy storage and stabilization of electric grid (ASPEMS, KK.01.2.1.01.0026, IRI project partner: Sintaksa d.o.o., EU funds)
- 2014 – 2016: Improving safety and efficiency of cogeneration/trigeneration plants (RC.2.2.08-0048, IRI project partner: Banko d.o.o., EU funds)
- 2008 – 2013: Development of electrical drives for crane systems (project partner: ABB Crane Systems, Sweden)

Contact

  • Email: mdespalatovic@fesb.hr
Marin Despalatović

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…
  • O6 - HIL testing of the developed control algorithms
    Validation of the effectiveness of the developed models, control algorithms, and optimization models through…
  1. FLEXsys
  2. Research team
  3. Marin Despalatović

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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