A Novel Approach to Algebraic Fitting of a Pencil of Quadrics for Planar 4R Motion Synthesis

The use of the image space of planar displacements for planar motion approximation is a well studied subject. While the constraint manifolds associated with planar four-bar linkages are algebraic, geometric (or normal) distances have been used as default metric for nonlinear least squares fitting of...

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Veröffentlicht in:Journal of computing and information science in engineering 2012-12, Vol.12 (4), p.1-7
Hauptverfasser: Ge, Q. J, Zhao, Ping, Purwar, Anurag, Li, Xiangyun
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Sprache:eng
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Zusammenfassung:The use of the image space of planar displacements for planar motion approximation is a well studied subject. While the constraint manifolds associated with planar four-bar linkages are algebraic, geometric (or normal) distances have been used as default metric for nonlinear least squares fitting of these algebraic manifolds. This paper presents a new formulation for the manifold fitting problem using algebraic distance and shows that the problem can be solved by fitting a pencil of quadrics with linear coefficients to a set of image points of a given set of displacements. This linear formulation leads to a simple and fast algorithm for kinematic synthesis in the image space.
ISSN:1530-9827
1944-7078
DOI:10.1115/1.4007447