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movement as well as performing the “sim2real” step for the control of physical musculoskeletal robots in the real world, i.e., use cass include neuromuscular model-based control of robotic legs and arms
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in “Embodied-AI and Human-Robot-Interaction” within the WASP project, led by Assoc. Prof. Zoe Falomir. The position is full-time for two years, starting in spring 2026, or as agreed. Department
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patient care; ensuring patient satisfaction; training and delegating duties; and adhering to University policies and procedures as well as federal, state and local regulations. Autonomous nursing care is
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advances scientific knowledge, develops engineering methodologies, and solves cross-disciplinary problems across four Thrust Areas: Bioscience & Biomedical Engineering, Intelligent Transportation, Robotics
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on robot development and autonomous navigation but based on the interests of the PhD fellow there are also opportunities to investigate planning and optimization of sensor placement, human-robot interaction
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reinforcement learning, agent-based modelling and simulation, autonomous decision-making, communication protocols, and applications in robotics, smart grids, and social networks. We consider computer science
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, including autonomous systems, robotics, cognitive and distributed sensing, and machine learning systems, among others. Successful candidates will be responsible team players and passionate about cutting-edge
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of expertise in vision-based driving systems. Beyond autonomous vehicles, the project’s advances in sensorimotor imitation learning are expected to benefit a wide range of robotic applications, promoting more
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PLAN The work to be developed is part of the CRIARTE project, which aims to develop and implement innovative solutions that promote effective collaboration between autonomous machines and workers in
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the Unit of Automation Technology and Mechanical Engineering . The objective of FAST-Lab is the seamless knowledge integration of humans and machines/robots creating smart environments by capitalising