2010Unpublished venueRequires access

Kinematics analysis of a novel over-constrained parallel manipulator

Bin Li, Xinhua Zhao, Meng Guangzhu

Open publisher page 1 citations

Abstract

In this paper, a novel over-constrained parallel manipulator with three degree-of-freedom (DOF) is presented. Closed-form solutions are developed for both the inverse and forward kinematics of the mechanism. For the inverse kinematics, four possible solutions are determined. For the forward kinematics, a twenty-four order polynomial equation has been derived to determine all possible poses for the mechanism. The complete sets of solutions for the inverse and forward position analyses of the mechanism have been achieved. An example is given to illustrate the effectiveness of this approach.

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What this paper is about

In this paper, a novel over-constrained parallel manipulator with three degree-of-freedom (DOF) is presented. Closed-form solutions are developed for both the inverse and forward kinematics of the mechanism. For the inverse kinematics, four possible solutions are determined. For the forward kinematics, a twenty-four order polynomial equation has been derived to determine all possible poses for the mechanism. The complete sets of solutions for the inverse and forward position analyses of the mechanism have been achieved. An example is given to illustrate the effectiveness of this approach.

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Available abstract

In this paper, a novel over-constrained parallel manipulator with three degree-of-freedom (DOF) is presented. Closed-form solutions are developed for both the inverse and forward kinematics of the mechanism. For the inverse kinematics, four possible solutions are determined. For the forward kinematics, a twenty-four order polynomial equation has been derived to determine all possible poses for the mechanism. The complete sets of solutions for the inverse and forward position analyses of the mechanism have been achieved. An example is given to illustrate the effectiveness of this approach.

Key concepts: Inverse kinematics, Kinematics, Kinematics equations, Forward kinematics, Mechanism (biology), Parallel manipulator, Inverse, Position (finance)

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