Development of an innovative system to manage the balancing of the energy mix in isolated and partially isolated systems using the fuzzy logic model FuzzyTR for power delivery

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Project title: Development of an innovative system to manage the balancing of the energy mix in isolated and partially isolated systems using the fuzzy logic model FuzzyTR for power delivery

Agreement number: FENG.01.01-IP.01-A0AH/24

Program name: European Funds for Modern Economy Programme, Priority 1. Support for entrepreneurs, FENG.01.01-IP.01-005/23 – SMART Path – SMART Path – Projects implemented in consortia

Project implementation period: 01.01.2025 – 31.12.2027

Project value: 18 949 581,12 PLN

Funds granted for Lublin University of Technology: 3 601 706,26 PLN

Leader: Tymbark-MWS Sp. z o.o.

Principal Co-investigator : dr hab. inż. Dariusz Czerwiński

Abstract: For the Tymbark-MWS production facility, it is important to balance the power demand and to be independent of the supply from the DSO. The use of own electricity sources should increase the economic benefits of their operation. The Project Leader's plant operates in a partially isolated system or even periodically in a fully isolated system (in situations of 20 degree power supply or total blackout), hence there is a need to manage the local power system in such a way as to keep it balanced at the highest level required by the demand side.

This issue is solvable, but requires a lot of online analysis and computer simulations. Due to the dynamics of the facility, it is not possible to do this without a dedicated support system - a system to manage the balancing of the plant's electricity mix. The innovation planned to be developed in the R&D module is a way to manage the production facility energy mix by using a fuzzyTR model in the auto-balancing of internal electricity supply and demand.

The expected outcome of the project is to be an IT system supporting, increasing the demand elasticity of the Tymbark-MWS factory to power from the OSD system, increasing readiness to participate in the DSR market and greater involvement of the plant's own electricity sources - for targeted power supply of the plant's process lines.

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Projekt współfinansowany ze środków Unii Europejskiej w ramach Europejskiego Funduszu Społecznego, Program Operacyjny Wiedza Edukacja Rozwój 2014-2020 "PL2022 - Zintegrowany Program Rozwoju Politechniki Lubelskiej" POWR.03.05.00-00-Z036/17

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