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reliability through systematic validation methods. CAVECORE combines cutting-edge research in AI-enabled robotics with novel evaluation frameworks aligned with EU AI Act requirements. More information: https
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expected to conduct frontier research within the following areas: robotic intelligence, humanoid robotics, surgical robotics, bio-inspired robotics, wearable devices and robotics, soft robotics, autonomous
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Social Robots, which involves several Swedish universities and is funded by WASP-HS (https://wasp-hs.org/ ). The Wallenberg AI, Autonomous Systems and Software Program – Humanity and Society (WASP-HS) is a
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intelligence systems that combine vision-language-action (VLA) modeling, robotic perception and interaction, and autonomous task execution. The Senior Research Engineer will play a key role in bridging
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; Real-World Validation: Deploy and benchmark your algorithms on our autonomous vehicle, mobile robots, and UAV testbeds. You will: publish in CVPR/ICCV/ECCV, NeurIPS/ICLR, and leading IEEE journals
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guidelines. For more information, see https://policy.umn.edu/hr/postdocappoint Responsibility • Lead innovative research on VLM/VLA methods and their applications in autonomous driving and ITS problem
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-piloted Unmanned Aerial Vehicle (UAV), an adaptable robotic gripper, and an Artificial Intelligence (AI) powered decision-making framework. The AI will autonomously assess the retrievability of litter
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, Toyota Motor Europe, and the Toyota Research Institute. Your work will directly shape the next generation of robots capable of autonomously learning complex manufacturing tasks, with safety
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to the subject area. Doctoral degree should be within robotics, computer science, electrical engineering, physics, or a related field. Additional requirements are: Experience in industrial robotics, autonomous systems
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structural topology optimization vision-based structural health monitoring autonomous and drone-based infrastructure inspection and vibration monitoring Successful candidates must hold a PhD degree in Civil