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research foci include spaceflight mechanics, orbital robotics and systems engineering for advanced space missions. This university-funded Ph.D. research will investigate both fundamental and applied
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robotics and user experience. This position offers a unique opportunity to work at the intersection of computer vision, interpretability, human perception, and computational creativity. You will be embedded
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scientific data from seabed, communications between underwater robots and vehicles. However, the performance of underwater acoustic communication is restricted by time and frequency variation, reverberation
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research foci include spaceflight mechanics, orbital robotics and systems engineering for advanced space missions. This university-funded Ph.D. research will investigate both fundamental and applied
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on ROS2 (Robot Operating System) and best practice of use of Github. Knowledge and skills on methods in numerical optimization, machine learning, as well as knowledge on marine power and control systems
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+ firmware, MCU + sensor integration, ideally using nRF chips). Optional but encouraged is some experience with UWB (communication protocol, distance estimation) and basic feedback control/robotics (Kalman
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such as autonomous cars and robots. Job description We have multiple open PhD positions at AVI@PRS and we are looking for motivated candidates with a strong background in computer vision, machine learning
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on Research Assessment and CoARA (responsible assessment of research and recognition of a greater breadth of academic contributions in accordance with NTNU's social mission). General information A public list
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with the criteria in the latter act, will not be able to be employed. General information A public list of applicants with name, age, job title and municipality of residence is prepared after
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the Luxembourg Space Agency (LSA), the European Space Agency (ESA) and the Luxembourg Institute of Science and Technology (LIST). ESRIC’s mission is to be an internationally recognized centre