Master robotics from kinematics to autonomous systems
Comprehensive robotics training covering robot programming, control theory, computer vision, and autonomous navigation with hands-on projects.
Forward/inverse kinematics, Jacobian matrices, trajectory planning, and dynamics modeling for robotic manipulators.
PID control, state-space control, adaptive control, and modern control techniques for precise robot motion.
Robot Operating System fundamentals: nodes, topics, services, tf transforms, and building complete robotic applications.
Image processing, object detection, semantic segmentation, and 3D vision for robotic perception and decision-making.
Simultaneous Localization and Mapping, path planning algorithms, obstacle avoidance, and autonomous navigation systems.
Collaborative robots (cobots), industrial manipulation, pick-and-place, assembly automation, and safety systems.