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) of different sizes. The central objective is to enhance energy efficiency, prolong battery lifespan, and achieve optimal power distribution through intelligent, data-driven decision-making frameworks. This study
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edge of energy systems and computational engineering, developing scalable methods to simulate and secure IBR-dominated grids. Your key responsibilities include: Conducting large-scale simulations
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in the following relevant areas tackling the energy transition: optimization of electrical systems and system analysis to find possibilities for electrification and decarbonization diagnostics and
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part of the Forschungsverbund Berlin (https://www.fv-berlin.de/) and the Leibniz Association (https://www.leibniz-gemeinschaft.de). You can find more details on the institute webpage: https://www.ikz
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engines Investigating optimization algorithms for heterogeneous architectures (e.g. AI engines in combination with programmable logic) Deployment of optimization algorithms for energy optimization and
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systems on the path towards a sustainable future. The position is initially limited to 6 months, but can be extended (there is funding for up to 4 years). You can expect: Creation of optimization models
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; • Experience in optimization applied to electrical power systems; • Knowledge of grid codes and system service provision by renewable energy parks; • Knowledge of tools and methodologies for reliability
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UNIVERSIDAD CATÓLICA DE MURCIA - FUNDACIÓN UNIVERSITARIA SAN ANTONIO DE MURCIA | Spain | 11 days ago
research in electrochemical devices. This position focuses on the development of next generation electrochemical platforms for sensing, energy conversion, and biomedical applications. About UCAM-SENS UCAM
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UNIVERSIDAD CATÓLICA DE MURCIA - FUNDACIÓN UNIVERSITARIA SAN ANTONIO DE MURCIA | Spain | 11 days ago
. Through advanced Machine Learning and Deep Learning technologies, it seeks to automate agronomic processes, optimize resource use, and maximize production in a sustainable way. Main duties Design
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, focusing on purpose-driven topology design (optimizing cell and module arrangement for performance) and vertical integration (seamless integration into vehicle architecture). You will create automated