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Postdoctoral Research Assistant in Decision-making under uncertainty for robots Grade 7 : £39,424 - £47,779 per annum We are looking for a post-doctoral research assistant to join the GOALS group
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manipulation and laboratory automation capability at COAST PCL. The Robotics Project Scientist will spend 30% time, in tandem with the in-house research team, on making significant and creative contributions
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of the editorial process, including manuscript assessment, editorial decision-making, commissioning and editing Reviews and News & Views articles, and contributing written content to the journal. A core
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localization, planning and control, manipulation, robot learning, embodied AI, human–robot interaction, multi-robot systems, mechatronics, robotic system integration, and autonomous decision-making for physical
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skills, organizational skills, and decision-making abilities. Ability to effectively engage with team members when issues arise to ensure appropriate communication and develop effective resolution plans
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intelligence, robotics, and the physical world to build systems that sense, reason, and act in real-world environments. The theme spans intelligent infrastructure and adaptive construction and manufacturing
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Centar izvrsnosti MARBLE drustvo s ogranicenom odgovornoscu za istrazivanje i razvoj | Croatia | about 1 month ago
for robotic planning and control Distributed and decentralised coordination and decision-making for multi-robot systems Communication-aware and connectivity-constrained multi-robot coordination Adaptive mission
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and efficient navigation systems for inspection robots, enabling autonomous localization, decision-making, motion planning and safe navigation in complex, dynamic real-world environments. The Research
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directions. Research Topics: Long-term Autonomy in Uncertain Environments a. Planning and Reasoning under Uncertainty - Decision-making under uncertainty - Decentralized planning and coordination for multi
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, including unmanned aerial vehicles (UAVs). The research will explore the joint design of communication, sensing, control, and decision-making mechanisms to enable efficient, reliable, and intelligent robotic