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technologies used in and connected to grids (e.g., distributed generation, storage, electric vehicles, heat pumps, smart energy management systems, etc.) and how to design grid tariffs that align grid and market
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range of research areas and design an individual research portfolio with high impact. As such, successful candidates will be able to align the skills that they learn pursuing a doctorate with their
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environment for PhD candidates, with multiple seminars, working groups, colloquia, and a doctoral school, which also gives access to multiple training opportunities, including courses on general research skills
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water sectors. A transnational strategy will be developed, aligning with the relevant policies of seven NWE countries and providing a framework for future joint efforts. Strategic guidelines will be
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supply options like storage (electricity, …), their value with respect to the system, residential and industrial suppliers, their spatial and temporal dimension, its alignment with grid constraints as
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of Standardisation, Accreditation, Safety, and Quality of Products and Services (ILNAS) and SnT at the University of Luxembourg. This multidisciplinary initiative is aligned with Luxembourg's National Technical
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use by the group employ multiple-input multiple-output (MIMO) technology and can be connected to build a distributed and cooperative network. To develop signal processing techniques, the group
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the implementation of the systems on full-scale bridges. Multiple full-scale case studies of bridges in Europe (Switzerland, Luxembourg, …) will be used to validate the developed solutions and compare