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IoT devices with reliable drivers/APIs; build autonomous/robotic testing workflows. Design LLM agents for planning, tool-use, and experiment control with safety interlocks. Develop and deploy RL/agentic
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of technical-scientific documentation within an applied research context. 3. BRIEF PRESENTATION OF THE WORK PROGRAMME AND TRAINING: Study of robotic systems at the Center for Robotics and Autonomous Systems
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expertise in robotic state estimation, SLAM, or perception for autonomous systems. A successful candidate should have a strong mathematical background (e.g., linear algebra, optimization, probability
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prides itself in its excellent research capabilities in areas including advanced manufacturing, aerospace, biomedical, energy, industrial engineering, maritime engineering, robotics, etc. The school is
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techniques, automation workflows, and data-driven methodologies through open-source software and hardware development. Current activities include autonomous experimentation, robotic synthesis platforms, high
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collaborative activities with academic and industrial partners. About You You will have a PhD (or close to completion) in a relevant subject, such as robotics, electrical/ electronic engineering, mechanical
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framework and providing human-in-the-loop validation of AI-generated experiment recommendations. You will make use of our dedicated Autonomous Chemistry Laboratory (ACL) and collaborate closely with
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with data from sources such as AIS (Automatic Identification System).; The grant holder will collaborate with the Center for Robotics and Autonomous Systems team on the development, integration, and
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of the sensor infrastructure itself using reverse estimation techniques.; The fellow will collaborate with the Robotics and Autonomous Systems Center team on the development, integration, and validation
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of Norway’s six national AI centres. NCEI brings together leading robotics and AI groups with key partners from across Norway with international collaborators to study how intelligence emerges from