HiHELIOS
Demonstrating a High-energy and High-power hybrid battery storagE soLutIonS platform for multiple grid services
Demonstrating a High-energy and High-power hybrid battery storagE soLutIonS platform for multiple grid services
Our focus is on developing human-centric, inclusive, and sustainable solutions that enable seamless collaboration between AI-driven automation and human skills. Through innovative technologies, such as augmented reality, real-time AI training, and...
The FUSE vision is to rapidly reduce emissions from the global fleet by unlocking the full potential of operational data through fusing AI and ship hydrodynamics for next generation voyage optimization.
The purpose of the research project is to generate new knowledge about how children experience living temporarily outside their parents’ home after a care takeover by the child protection service, both in the short and long term.
The project will improve the access to locally produced spare parts and other custom-made parts to the seafood industry in the Arctics, by using 3D printing with metal alloys and polymer composites.
AI POCUS CCC aims to enhance military triage and combat causality care (CCC). Creating artificial intelligence (AI)-guided ultrasound solutions to contribute to faster diagnoses, improved treatment outcomes, and reduced unnecessary evacuations from...
The main goal of the project is to document and quantify the effect of Blue Lice’s technology as a preventive measure against sea lice infestations during a full salmon production cycle at sea.
The Mecalo project will use hydrogen to convert CO2 emissions from metal production into a raw material that can be returned to the value chain. This way, the production of critical raw materials like silicon and manganese can be made CO2-neutral...
The NEXPECH2 project is meeting the growing demand for energy while reducing greenhouse gas emissions by developing a next-generation photoelectrochemical (PEC) system that uses sunlight to split water into green hydrogen (H₂) at standard atmospheric...
The main objective of REED project will be the development of a Manufacturing as a Service (MaaS) platform that will provide the enabling technologies, equipment and services for the manufacturing of bulky parts of the capital goods sector, assuring...
reSail will advance wind-assisted propulsion by improving the understanding of the wind conditions faced by wind-assisted propulsion systems (WAPS).
The goal of the TWinYards project is to find out how we can make Norwegian shipyards more efficient by using digital twins and artificial intelligence. This will enable the shipyards to reduce costs and contribute to sustainable operations for...
Our primary objective, and vision, is to enable early AKI diagnosis through the determination of renal blood flow autoregulation.
The goal for Microfeed is to be able to use diatoms as a raw material in salmon feed by contributing with documentation to show the effect of diatoms on nutrition, health and quality of salmon fish.
DIALOG’s ambition is to pave the way for rapid adoption of Artificial Intelligence (AI) infused technologies in Air Traffic Management (ATM) systems by delivering novel methods for human-AI collaboration based on inferring Air Traffic Controllers...
ORION will advance and integrate cutting edge digital components into a Digital Twin structure to enable a higher degree of digitalization for energy stakeholders, facilitating better decision-making processes and ensuring sustainable and affordable...
SEADOTs (Social-Ecological Ocean Management Applications using Digital Ocean Twins) has the objective of advancing holistic, just and sustainable ocean management by bringing a predictive component for social-ecological aspects into comprehensive...
FME Battery brings together more than 40 leading partners to drive research on next generation, sustainable and circular battery technologies.