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A robotic arm is a type of mechanical arm, usually programmable, with similar functions to a human arm; the arm may be the sum total of the mechanism or may be part of a more complex robot. The links of such a manipulator are connected by joints allowing either rotational motion (such as in an articulated robot ) or translational (linear ...
Victor Scheinman's MIT Arm, built for MIT's Artificial Intelligence Lab ca. 1972, the first arm designed with a 321 kinematic structure. 321 kinematic structure is a design method for robotic arms (serial manipulators), invented by Donald L. Pieper and used in most commercially produced robotic arms.
Robotic surgery involves the use of less-invasive surgical methods, which are “procedures performed through tiny incisions”. [1] Robots use the da Vinci surgical method, which involves the robotic arm (which holds onto surgical instruments) and a camera. The surgeon sits on a console where he controls the robot wirelessly.
A typical serial robot is characterized by a sequence of six lines S i (i = 1, 2, ..., 6), one for each joint in the robot. For each sequence of lines S i and S i+1, there is a common normal line A i,i+1. The system of six joint axes S i and five common normal lines A i,i+1 form the
In robotics, robot kinematics applies geometry to the study of the movement of multi-degree of freedom kinematic chains that form the structure of robotic systems. [ 1 ] [ 2 ] The emphasis on geometry means that the links of the robot are modeled as rigid bodies and its joints are assumed to provide pure rotation or translation .
An articulated six DOF robotic arm uses forward kinematics to position the gripper. The forward kinematics equations define the trajectory of the end-effector of a PUMA robot reaching for parts. In robot kinematics , forward kinematics refers to the use of the kinematic equations of a robot to compute the position of the end-effector from ...
Parametric robot calibration is the process of determining the actual values of kinematic and dynamic parameters of an industrial robot (IR). Kinematic parameters describe the relative position and orientation of links and joints in the robot while the dynamic parameters describe arm and joint masses and internal friction. [3]
The mathematical procedure for doing this is called an arm solution. For some robot designs, such as the Stanford arm, Vicarm SCARA robot or cartesian coordinate robots, this can be done in closed form. Other robot designs require an iterative solution, which requires more computer resources.
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