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willingness to train during the PhD. Interest in analyzing the safety of robotic systems through formal models. Experience in implementing continuous planning and control algorithms for robots. Curiosity
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/worker assistance. We are seeking a highly motivated and ambitious PhD researcher to develop the next generation of assistive and therapeutic robotic systems and to evaluate the performance
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You will be responsible for the work on motion planning for mobile manipulation and collaborate with two PhD students within the context of ERC project "INTERACT". Mobile robots are not yet capable
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solutions in driving simulator experiments with human participants. Need to have: MSc (for Junior Researcher) or PhD (for Postdoc researcher) in signal processing, human factors, vehicle engineering
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Join a multidisciplinary consortium and develop state-of-the-art computational models to explore, optimize, and accelerate the design of an innovative soft robotic heart for HF patients worldwide
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. Georgios Papaioannou (Intelligent Vehicles Section at Cognitive Robotics Department ) and Dr. Meichen Guo (Delft Center for Systems and Control). The project is funded as Cohesion grant, a internal TUD
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misses an actionable framework to deliver on its promises [1]. In this PhD project, you will directly contribute to tackling this challenge by taking inspiration from key neuroscience insight. To do so
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supervised by Dr. Georgios Papaioannou (Intelligent Vehicles Section at Cognitive Robotics Department). The intelligent vehicles section consists of three groups (Machine Perception, Human Factors and
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flawless wind turbine blade production. This position is part of the Efficient & Proven Zero-Defect Robotic Manufacturing Project, where in collaboration with industry leaders, we're dedicated to reshaping
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universities, numerous companies, and encompasses scientific research, data collection and sharing, education, and practical applications in agriculture and plant breeding. On this PhD project you will develop