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Field
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applied to unstructured environments. Proven ability to design, implement, and evaluate experimental systems involving hardware and sensors. Experience with multi-modal sensing (e.g., RGB-D, thermal, LiDAR
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innovating hardware-software co-design for privacy and integrity. Mentor undergraduate and graduate students in experimental design, data analysis, paper writing, and professional development; provide
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integrating these distinct technologies in a multi-robot, multi-operator environment, the question arises of how to improve overall system design and communication between process building blocks. Therefore
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++ and Python are required. Experience with control and optimization of power generation systems (e.g., wind power) is desirable but not required. Some experience with real-time control hardware is
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generally, the digital continuum (HL-LHC, SKAO and SLICES-RI). ODISSEE will provide evolutionary and revolutionary hardware and software platforms to meet the digital challenges of these major infrastructures
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precision. Key Responsibilities: You will lead the development of the first intraoperative 4D ultrasound prototype by integrating hardware and software in close collaboration with industrial and academic
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, robust acquisition strategies. Design, execute, and document high-quality measurements for internal projects and external collaborations, including appropriate QC, troubleshooting, and clear reporting
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into energy and battery management systems. • Collaborate with industrial partners on validation through hardware-in-the-loop testing and real-world demonstrations. • Contribute technical evidence for
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at two levels: SAACD Component: This is a UAV made up of hardware and software sub-systems, capable of observing, predicting, deciding and reconfiguring itself to fulfil its mission (e.g. surveillance
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supervisor in developing and implementing the research agenda; Reproduce results of the state-of-the-art (SOTA) methods; Design and implement experiments on real platforms operating outdoors, to compare our