Advanced Certificate in Space Robotics: Unlocking the Potential of Space
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⢠Advanced Orbital Mechanics: This unit covers the advanced concepts of orbital mechanics, including perturbation analysis, orbit determination, and orbit control for space robotics applications.
⢠Space Robotics Design and Analysis: This unit explores the design and analysis of space robotic systems, including kinematics, dynamics, control, and software architecture.
⢠Space Robotics Sensors and Instrumentation: This unit covers the various sensors and instrumentation used in space robotics, such as cameras, lidar, and star trackers, and their calibration and data processing techniques.
⢠Space Robotics Autonomy and Decision Making: This unit delves into the autonomy and decision-making algorithms used in space robotics, including artificial intelligence, machine learning, and path planning techniques.
⢠Space Robotics Motion Planning and Control: This unit covers the motion planning and control strategies used in space robotics, including impedance control, compliance control, and force control.
⢠Space Robotics Manipulation and Grasping: This unit explores the manipulation and grasping techniques used in space robotics, including contact modeling, force control, and dexterous manipulation.
⢠Space Robotics Haptics and Teleoperation: This unit covers the haptics and teleoperation technologies used in space robotics, including force feedback, virtual reality, and human-robot interaction.
⢠Space Robotics System Integration and Testing: This unit delves into the system integration and testing techniques used in space robotics, including ground testing, thermal vacuum testing, and space environmental testing.
⢠Space Robotics Mission Operations and Maintenance: This unit covers the mission operations and maintenance strategies used in space robotics, including ground control, anomaly resolution, and system upgrades.
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