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ORCHESTRA
- /en/research-topics/hybrid-electric-aircraft-technologies/projects/orchestra
machinery, power management and control, wiring harness solutions, thermal management, electrical energy storage, experimental and virtual testing, and system integration. The consortium partners from academia
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LOM-Ice
- /en/research-topics/hybrid-electric-aircraft-technologies/projects/lom-ice
snow testing and simulation. Funded by the Federal Ministry for Climate Protection, Environment, Energy, Mobility, Innovation and Technology (BMK) and the Austrian Research Promotion Agency (FFG). × Kontakt
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SELECT
- /en/research-topics/hybrid-electric-aircraft-technologies/projects/select
ic air taxis poses challenges in the areas of flight safety in a wide range of icing conditions, energy efficiency, performance, and noise emissions. The aim of SELECT is to develop advanced surface t [...] calculation results for an aerofoil Funded by the Federal Ministry for Climate Protection, Environment, Energy, Mobility, Innovation and Technology (BMK) and the Austrian Research Promotion Agency (FFG). × Kontakt
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OLGA
- /en/research-topics/hybrid-electric-aircraft-technologies/projects/olga
efficient and carbon neutral airport and airline operations, enabling sustainable logistics, smart energy & mobility, intramodality for passengers and freight, performing emission/air quality assessments
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RealLi!
- /en/research-topics/sustainable-smart-battery-manufacturing/projects/realli
battery materials not only have to impress with a significant increase in performance compared to energy storage systems currently available on the market, but also offer a significant reduction in their [...] stabilization of this nickel-rich cathode material, the rapid charging and discharging capability of the energy storage device is improved by the use of lasers to introduce structures into the surface of the electrode [...] production as a side effect. This is particularly advantageous in thick electrode layers for high energy densities. The selection of the optimal structure design is based on simulation. The electrochemical
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Climate Care
- /en/media/ait-issues/climate-care
in the areas of energy, mobility and the use of biological resources. They research measures for adaptation to climate change for industry and agriculture. Accordingly, increasing energy efficiency and [...] n of renewable energy into "smart" electricity grids. This facility was recently expanded to include a DC laboratory - a unique facility in Europe for the further development of energy infrastructure in [...] lity or data centers. Energy systems of the future are designed and tested in high-end simulation environments and practical pilot applications, for example in the area of energy communities. The AIT City
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TinSLIB
- /en/research-topics/battery-technologies/translate-to-english-projecte/tinslib
storage medium of choice for electric vehicles in the future. Properties such as power density, energy density, capacity, cycle stability and cell life are decisive for the operation and performance of
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Projects
- /en/research-topics/integrated-digital-urban-planning/projects
knowledge capacity development project Urbanica Urban infrastructure development simulator UrbanLight Energy-efficient lighting systems in urban street space
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Battery Materials Development
- /en/labs/materials-development
Täubert, H. Kronberger: "Silicon/Mesoporous Carbon (Si/MC) Derived from Phenolic Resin for High Energy Anode Materials for Li-ion Batteries: Role of HF Etching and Vinylene Carbonate (VC) Additive"; Batteries
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CyberSecPro
- /en/research-topics/dependable-systems-engineering/projects/cybersecpro
strengthen the focus on practical aspects of industrial security in different sectors (maritime, health, energy), and to expand existing and establish new public-private partnerships. According to research by
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CoDeC Symposion
- /en/codec/symposion
Austrian Institute of Technology Welcome from the Head of Center Wolfgang Hribernik Head of Center for Energy, Austrian Institute of Technology The Digital Resilient Cities Unit Markus Ray Head of Competence
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What drives young female researchers
- /en/blog/what-drives-young-female-researchers
on the web. CAROLIN MONSBERGER Junior Research Engineer, Energy Engineer My Impact: to set up simulation and calculation models to evaluate energy systems in order to contribute to 100% renewable electricity [...] electricity in Austria by 2030. My Vision: To make sustainable measures for energy generation more profitable and thus drive the energy transition. QUYNH NGUYEN Junior Scientist, Cognitive Scientist My Impact: [...] magnesium batteries to make our world more sustainable. My Vision: Revolutionize the concept of "energy storage" for a sustainable future. SABINE NEUBERGER Junior Scientist, Agricultural Economist My Impact:
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Female scientists work to create sustainable solutions
- /en/blog/ait-female-scientists-work-to-create-sustainable-solution
My Scientific Impact: I analyse sustainability reports published by energy companies for equal opportunities and change in the energy transition. My Responsibility: I pay attention to my carbon footprint [...] Sustainable Development Goals (SDG): SDG 6 (Clean water and sanitation), SDG 7 (Affordable and clean energy), SDG 9 (Industry, Innovation and Infrastructure), SDG 11 (Sustainable cities and communities), and [...] research field at AIT: Our seven Centers conduct intensive research into carbon neutral solutions for energy, mobility and the use of biological resources, and into innovative technologies which provide important
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Studie: Importmöglichkeiten für erneuerbaren Wasserstoff
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Zukunft eine zentrale Rolle spielen. Dahingehend hat das Bundesministerium für Klimaschutz, Umwelt, Energie, Mobilität, Innovation und Technologie das AIT mit der Erstellung einer Studie beauftragt, die v [...] Name * E-Mail * Betreff * Nachricht * Send Johannes Kathan , MSc Senior Research Engineer / Electric Energy Systems +43 (0) 50 550-6027 +43 (0) 50 550-6390 johannes.kathan(at)ait.ac.at ECKDATEN Projektpartner:
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Smart and Carbon-Neutral Urban Development
- /en/research-topics/smart-and-carbon-neutral-urban-development
realisation of Positive Energy Districts (PED) and the set-up of Smart Districts. The research field supports that action with advanced instruments for decarbonisation ranging from urban energy models to advanced [...] use of urban data are a prerequisite for developing strategies to reduce energy consumption, increase the share of renewable energies, integrate CO2-free, more efficient and better transport systems into [...] contradicting data sources. Spatio-temporal urban energy and greenhouse gas emission model In this research field we deal with the modeling of urban energy and greenhouse gas emissions for the simulation
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Energy Conversion and Hydrogen
- /en/research-topics/energy-conversion-and-hydrogen
Energy Conversion and Hydrogen Energy Conversion and Hydrogen To complete the transition from fossil fuels to renewable energy, an even greater expansion of energy sources such as solar power or wind power [...] modules & Power Plants Network Operators & Energy Service Providers Energy Markets & Infrastructure Policy Decarbonisation and Digitalisation in Industry Projekte Energy Conversion and Hydrogen Projekte × Kontakt [...] dominant hydrocarbon-based energy system: Hydrogen-based technologies, such as large-scale storage, electrolysers, fuel cells, or gas engines, are already important elements in the energy technology spectrum
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ERIgrid 2
- /en/themen/power-system-digitalisation/projekte/erigrid-2
(AIT) - Coordinator Commissariat à l’énergie atomique et aux énergies alternatives (CEA) Centre for Renewable Energy Sources and Saving (CRES) European Distributed Energy Resources Laboratories e.V. (DERlab) [...] ERIgrid 2 European Research Infrastructure supporting Smart Grid and Smart Energy Systems Research, Technology Development, Validation and Roll Out – Second Edition Die aktuelle Transformation und Dig [...] Versorgungssicherheit erfordern neue Ansätze für die Umwandlung, Speicherung und Verteilung von Energie in verschiedenen Bereichen. ERIGrid 2.0 öffnet und erweitert deshalb, aufbauend auf seinem gleichnamigen
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ERIGrid - Connecting European Smart Grid Infrastructure
- /en/research-topics/power-system-digitalisation/projects/erigrid-connecting-european-smart-grid-infrastructure
networks are urgently required to integrate the growing number of distributed energy sources and generators into our energy system. Under the leadership of AIT, 18 of Europe’s top research institutions [...] their current form, will soon be unable to cope with the increased use of distributed and renewable energy sources. Since fluctuating wind and solar power generation seldom correlates with actual demand, [...] consumers will be required in the future in order to secure both the power supply and quality. Continuous energy management can be achieved through the use of intelligent networks. The envisioned complex system
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Performance+ - PV System Optimisation
- /en/research-topics/power-electronics-system-components/projects/performance-pv-system-optimisation
Electric Energy Systems +43 (0) 50 550-6032 +43 (0) 50 550-6390 johannes.stoeckl(at)ait.ac.at Publications published:F. Andren, R. Bründlinger, T. Strasser: "IEC 61850/61499 Control of Distributed Energy Resources: [...] electricity into the power system shall be provided by methods for short-term forecasting, integrated energy management and storage control, PV system monitoring and control. The goal is to improve the com [...] design and bankability, Robust operational modelling for optimising the system output, Integrated energy management and storage control, Real time monitoring and control: sensors communication and feedback
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Medusa
- /en/research-topics/power-electronics-system-components/projects/medusa
Emission Mobility, a research and demonstration program of the Climate and Energy Fund in the field of sustainable mobility and energy supply. https://www.klimafonds.gv.at/call/zero-emission-mobility-2021/ [...] passenger cars," explains Markus Makoschitz, project manager and senior scientist at the AIT Center for Energy. Furthermore, CO2 emissions are to be reduced by connecting battery storage systems in combination [...] Name * E-Mail * Betreff * Nachricht * Send DI Dr. Markus Makoschitz Senior Scientist / Electric Energy Systems +43 664 664 2351797 Markus.Makoschitz(at)ait.ac.at Key facts Project start Phase 1: May
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