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The aim of the research topic is research in the field of energy flow management in the energy platform of a complex system respecting the principles of a circular economy at the level of distribution grid for powering energy platforms of municipalities, cities or micro-regions.

A complete solution will consist of two main directions in the research and development of management methods: 

  • Technologies for the conversion of alternative fuels, waste and by-products into usable chemicals and useful forms of energy, their storage and efficient use with the support of digital twin.
  • Electricity distribution networks within energy platforms of municipalities, cities or micro-regions. The use of modern technologies for energy storage in various forms is a given.

The latest trends will be used in areas such as high-performance computing, advanced data analysis, artificial intelligence and their use for the efficient self-organization of smart energy networks, the adaptive and floating adjustment of individual elements according to current needs. A given is the use of distributed calculations, mathematical modeling and optimization and digital twin technology of selected parts to speed up and increase the efficiency and reliability of the developed solutions. Our team consists of experts in the field of power engineering, measurement and control technology, computer science and mathematics.

Off-grid systems, micro-grid

grid systems (future community energy) are a modern trend in electricity and are closely related to the transformation of energy from centralized to decentralized and generally to the transition and modernization of energy networks in the context of “smart grids”. The research team deals with the use of stochastic renewable electricity sources, storage systems and the management of all these technologies.

Vehicle to home, Vehicle to grid, Elektromobilita

The research team deals with the development of technologies for systems that enable cooperation and the sharing of storage capacities between electric cars and stationary storage units for powering electrical networks (off-grid and distribution). In the field of electromobility, the research team focuses on research and development in the field of energy infrastructures, which are needed for charging electric vehicles and at the same time it pursues the development of supporting software applications that are used for effective assessments in the transition of large car fleets from internal combustion engines to electric vehicles.

Vehicle to home, Vehicle to grid, Elektromobilita

The research team deals with the development of technologies for systems that enable cooperation and the sharing of storage capacities between electric cars and stationary storage units for powering electrical networks (off-grid and distribution). In the field of electromobility, the research team focuses on research and development in the field of energy infrastructures, which are needed for charging electric vehicles and at the same time it pursues the development of supporting software applications that are used for effective assessments in the transition of large car fleets from internal combustion engines to electric vehicles.

Diagnostics of electrical equipment

The research team is engaged in the research and development of modern diagnostic methods for a wide range of electrical equipment. The focus of the research and development on the issue of insulation systems for both cable and insulated overhead lines is extensive. We have numerous modern diagnostic devices at our disposal, which enable us to effectively determine the current technical condition of electrical equipment using several methods with different explanatory power. In this context, we provide extensive services in the field of diagnostics of electrical equipment, diagnostics of rotating and non-rotating electrical machines, including diagnostics of low-voltage and high-voltage electrical networks.

vyzkumna_oblast_01_materialy

vyzkumna_oblast_01_materialy

vyzkumna_oblast_01_materialy

vyzkumna_oblast_01_materialy