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Field
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, precision, and adaptability in dynamic environments, including navigation in complex spaces. - Perception and Sensing: Leveraging diverse sensors and advanced perception techniques to interpret and interact
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capabilities for precise characterisation of nuclear environments through leveraging robotics technologies. This will be achieved by developing a modular swabbing puck equipped with advanced tactile sensors
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environment project, we will develop automated species and community recognition, particularly focusing on pathogenic soil fungi, with help of deep-learning algorithms fed with microscopic image and Raman
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work on a project to conduct research for human robotic teaming, in particular: Perform optimization on complex system subject to various constraints. Design and develop real-time algorithms. Simulate
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to conduct and lead research sensor array and radar processing. in particular the detection, localization and tracking of active and passive targets in a cellular network under harsh urban environment
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AI/ML for Object Tracking and Sensor Fusion, you will develop next-generation algorithms that power intelligent aerial systems—enabling real-time object tracking, multi-sensor data fusion, and
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-world solutions. The engineer will design algorithms, develop software, and integrate real-time and HPC sensing and communications systems. Major Duties/Responsibilities: Design and optimize signal
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. You will: Design, implement, integrate, and test software for performing autonomous vehicle guidance and control. This software includes monitoring sensors, controlling actuators, controlling motors
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navigation technologies in the world, built around unique laboratories specially designed to test the most precise navigation sensors and systems. The mission of the NRDD is to conduct new navigation
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campus of ARL focused on developing the most advanced navigation technologies in the world, built around unique laboratories specially designed to test the most precise navigation sensors and systems