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Task-oriented design of robot kinematics using the Grid Method

Joon-Young Park, Pyung‐Hun Chang, Jeong-Yean Yang

Year
2003
Citations
28

Abstract

Abstract This paper presents a task-oriented design method for robot kinematics based on the Grid Method, which is widely used in the finite difference method and heat transfer/fluid flow analyses. This approach drastically reduces the complexity of the whole problem and increases the efficiency compared with previous approaches. More specifically, the Grid Method with a new formulation simplifies the design to a problem of a four-design-variable unit grid, which does not require solving inverse/forward kinematics. The efficiency of the Grid Method has been confirmed through a kinematics design of a planar robot for nuclear power plants and spatial robots. Keywords: Grid Methodrobot manipulatortask-oriented designkinematic designoptimum design.

Keywords

KinematicsRobotComputer scienceTask (project management)GridInverse kinematicsControl engineeringSimulationArtificial intelligenceEngineering

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