Completed projects
Within the framework of the research project related to the area of autonomous transportation, it is planned to launch five Proof-of-Concept tasks/projects aimed at developing a group of technologies that will be of interest to the private and public sectors. The main objective of the research project is to obtain the possibility of commercialization of the given solutions and to obtain a wide audience for the technology, which would justify the need to build a Strategic Lukasiewicz Program on autonomous transportation.
The project concerns the development of a high-efficiency inverter (DC/AC) working with PV batteries.
The project concerns the development of a method and production of modern insulation materials in the form of flame-retardant polyurethane foams based on renewable or recycled raw materials.
In recent years, there has been an intensive increase in the number of electrical appliances supplied from the mains via pulsed circuits using solid-state switches, so-called linear power supplies.
The project involves the design, construction, and testing under laboratory conditions of a state-of-the-art drive system with a motor rated at approximately 115 kW.
The project aims to develop a type IV compressed hydrogen tank for vehicle applications. The work will define the technical and formal requirements for the tank.
The project involves the comprehensive preparation of a method for the treatment of waste raw material from wind turbine blades and the development of recyclate in the form (degree of fineness) that is most suitable for use as filler for composites for the manufacture of equipment components (revision holes, flaps, doors, casings, column and nacelle profiles), gel-coat repair pates (filling of cavities in working systems) and top-coat varnishes (protection or servicing of surfaces about blades) as a recycling and circular economy.
The project aims to promote science among children by organizing an open day at the Lukasiewicz-Institute of Electrical Engineering, which will feature workshops, scientific demonstrations and laboratory tours to inspire young participants to explore the world of science.
The objective of the project is to market the Polish GaN HEMT (high electron mobility transistor) 650 V and 1200 V for power electronics for high-power industries. Such a solution will give Polish industry the opportunity to introduce innovative indigenous technology solutions in the field of electronics into its own products and business products.
The classic hydrogen power plant produces hydrogen in an electrolyser. The electrolyser is powered by electricity, which can come from renewable sources, and water with suitable physico-chemical parameters.
The project consists of mastering the application technology of gallium nitride transistors in the construction of electronic/energy-electronic circuits, enabling the wider introduction of GaN transistors in future projects and realising the objective of investing in the acquisition of a test bench for testing and researching new power electronic converter solutions.
Creating environmentally friendly electric vehicles requires, among other things, reducing their weight and, consequently, their energy consumption.
The e-Van project responds to current socio-economic needs related to the development of electromobility. The final recipients of the project will be companies in the logistics, courier and maintenance industries.
The project consists in setting up a processing line for composite recyclate by identifying the unit processes required to grind heterogeneous recyclate reinforced with continuous fibre, chopped fibre and powder fillers
The project involves the development of a scalable S2SP (Shore to Ship Power) system consisting of an AC/DC substation, a DC cable power distribution system and mobile DC/AC terminals, positioned at shorelines as required
The aim of the project is to develop, build and implement a prototype of a superconducting short-circuit current limiter (NOPZ) for medium voltage (U = 24 kV), as a component to make better use of the existing network infrastructure
The project involves the research work aimed at preparing ready-to-use solutions to support the operation and maintenance of MV (Medium Voltage) switchgear in the areas of safety, prevention and efficiency
The project involves the development of a scalable two-module energy storage for power system applications with a high share of renewable energy sources. The energy storage method will use the phenomenon of low-temperature superconductivity.
The scientific objective of the project is to develop a silicon carbide IGBT transistor for power electronics. The aim of the industrial research is to develop a solid state transformer (SST) circuit, which is of key importance in many areas of application and, in particular, in the rapidly growing EV market.
The objective of the project is to support the shipbuilding and boatbuilding sector in the South Baltic area in adapting to electric mobility in shipping and creating related products, as well as promoting the market potential for electric boats and ships in the region
The project involves industrial research and development work to develop a distribution hybrid transformer (DTH) with stepless output voltage control, with power factor correction capability and operation as a coupler with DC circuits, including battery energy storage.
The project involves the research work aimed at preparing ready-to-use solutions to support the operation and maintenance of the protection system of high-voltage (HV) and medium-voltage (MV) substations in the areas of safety, prevention and data acquisition, necessary for the prediction of emergency conditions in the operation of the above-mentioned substations.
The project involves the comprehensive deep thermal upgrade of 3 buildings belonging to the Institute of Electrical Engineering in Warsaw – no. 7, 7a and 20 – and aims to address the low energy efficiency of these buildings.