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an opportunity to evaluate the use of drones to describe the receiving flow field and assess alternative approaches to rapidly assess the mixing zone. The project will aim to provide assurance on regulatory
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many engineering applications, such as flapping-wing aerial vehicles, drone or helicopter propellers, wind turbine blade, etc. The aerodynamic and aeroacoustics effects of the unsteady flow conditions
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, calibration of RF front-ends, ground testing making use of drones, cubesat systems, on-board processing, data transfer and analysis, translation into ground truth and into predictions important for climate
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platforms, calibration of RF front-ends, ground testing making use of drones, cubesat systems, on-board processing, data transfer and analysis, translation into ground truth and into predictions important for
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include the use of ariel drones to monitor shores and sea surface populations, use of AUVs and ROVs to survey benthic populations, and the use of static cameras to record behaviours. Processing imagery
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PhD Supervisor: Ivo Peters Supervisory Team: Ivo Peters, Tim Waters Project description: The increasing use of drones and electric bikes offers exciting new opportunities for bespoke and efficient
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stakeholders. You will use an interdisciplinary approach to provide the natural science base, map the current and potential habitats of native and introduced oysters using drone, acoustic and on-foot surveys
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their futures. PAR data collection approaches will be developed with the CYP and the PhD researcher; and may include 360 digital technologies (cameras, models, drones and software’s) to communicate and educate
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of autonomous drone piloting systems capable of identifying the different elements of the environment and how they relate to each other when designing their routes and planning their tasks, systems capable