Home /Research /Optimal Design of Spherical 5R Parallel Manipulators Considering the Motion/Force Transmissibility
SURGICAL

Optimal Design of Spherical 5R Parallel Manipulators Considering the Motion/Force Transmissibility

Chao Wu, Xin-Jun Liu, Liping Wang, Jinsong Wang

Year
2010
Citations
115

Abstract

The spherical 5R parallel manipulator is a typical parallel manipulator. It can be used as a pointing device or as a minimally invasive surgical robot. This study addresses the motion/force transmission analysis and optimization of the manipulator by taking into account the motion/force transmissibility. The kinematics of the manipulator is analyzed. Several transmission indices are defined by using screw theory for the performance evaluation and dimensional synthesis. The process of determining the optimal angular parameters based on performance charts is presented. The manipulator that has a large workspace and good motion/force transmissibility is identified.

Keywords

Transmissibility (structural dynamics)WorkspaceParallel manipulatorKinematicsManipulator (device)Control theory (sociology)Motion (physics)Transmission (telecommunications)Mechanism (biology)Process (computing)

Related papers

Browse all SURGICAL papers