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  2. Visual servoing - Wikipedia

    en.wikipedia.org/wiki/Visual_servoing

    Visual servoing, also known as vision-based robot control and abbreviated VS, is a technique which uses feedback information extracted from a vision sensor (visual feedback [1]) to control the motion of a robot. One of the earliest papers that talks about visual servoing was from the SRI International Labs in 1979.

  3. Peter Corke - Wikipedia

    en.wikipedia.org/wiki/Peter_Corke

    Peter Corke FAA (born 24 August 1959) is an Australian roboticist known for his work on Visual Servoing, field robotics, online education, the online Robot Academy and the Robotics Toolbox and Machine Vision Toolbox for MATLAB (matrix laboratory).

  4. Vision-guided robot systems - Wikipedia

    en.wikipedia.org/wiki/Vision-guided_robot_systems

    The vision system provides the exact location coordinates of the components to the robot, which are spread out randomly beneath the camera's field of view, enabling the robot arm(s) to position the attached end effector (gripper) to the selected component and pick from the conveyor belt. The conveyor may stop under the camera to allow the ...

  5. Chinese tech firm shares robot training secrets with the world

    www.aol.com/chinese-tech-firm-shares-robot...

    A pioneering artificial intelligence and robotics company from China has developed a repository of over 1 million robotic movements to provide robotic training.

  6. Robotics Toolbox for MATLAB - Wikipedia

    en.wikipedia.org/wiki/Robotics_Toolbox_for_MATLAB

    The Robotics Toolbox for Python is a reimplementation of the Robotics Toolbox for MATLAB for Python 3. [7] [8] Its functionality is a superset of the Robotics Toolbox for MATLAB, the programming model is similar, and it supports additional methods to define a serial link manipulator including URDF and elementary transform sequences.

  7. Robotic sensing - Wikipedia

    en.wikipedia.org/wiki/Robotic_sensing

    Robot sensing includes the ability to see, [1] [2] [3] touch, [4] [5] [6] hear [7] and move [8] [9] [10] and associated algorithms to process and make use of environmental feedback and sensory data. Robot sensing is important in applications such as vehicular automation, robotic prosthetics, and for industrial, medical, entertainment and ...

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