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Field
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control algorithms (such as adaptive control or model predictive control) to reliably maneuver Army projectiles to the target despite limited state information, control authority, and changing flight
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Inertial Navigation System algorithms including modeling and analysis of navigation sensors Develop, debug, and test Matlab/Simulink-based software and data analysis tools, including the creation of unit
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. This includes electro-optical systems, imaging systems, and a broad range of sensors. Collaborating with scientists and engineering teams to execute the full development lifecycle, from scope definition
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including clinical, algorithm, and mechanical engineering to define system requirements, sensor specifications, and patient interaction protocols. • Develop custom control and data processing software in
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with mid-frequency active sonar or underwater sensor systems. Proficiency with scientific programming and visualization tools (e.g., MATLAB, NumPy, Matplotlib) for data analysis, algorithm development
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multi-sensor atmospheric remote sensing from ground, airborne, and satellite platforms. Our group develops advanced algorithms and data analysis methods to address fundamental scientific challenges
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Analyze multi-sensor data to evaluate system performance Design, implement, integrate, and test software to demonstrate guidance and control algorithms Collaborate and communicate with a team of peers
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developing and testing with sensor fusion engines - Experience with navigation algorithm development - Effective written and verbal communication skills - Due to the requirements of our research contracts with
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system automation. Investigate and improve human-machine interaction frameworks for construction operations, including robotics, sensor-based communication, and real-time monitoring. Publish research
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multi-sensor atmospheric remote sensing from ground, airborne, and satellite platforms. Our group develops advanced algorithms and data analysis methods to address fundamental scientific challenges