A Multi-sided Bézier Patch with a Simple Control Structure

A new n‐sided surface scheme is presented, that generalizes tensor product Bézier patches. Boundaries and corresponding cross‐derivatives are specified as conventional Bézier surfaces of arbitrary degrees. The surface is defined over a convex polygonal domain; local coordinates are computed from gen...

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Bibliographic Details
Published inComputer graphics forum Vol. 35; no. 2; pp. 307 - 317
Main Authors Várady, Tamás, Salvi, Péter, Karikó, György
Format Journal Article
LanguageEnglish
Published Oxford Blackwell Publishing Ltd 01.05.2016
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Summary:A new n‐sided surface scheme is presented, that generalizes tensor product Bézier patches. Boundaries and corresponding cross‐derivatives are specified as conventional Bézier surfaces of arbitrary degrees. The surface is defined over a convex polygonal domain; local coordinates are computed from generalized barycentric coordinates; control points are multiplied by weighted, biparametric Bernstein functions. A method for interpolating a middle point is also presented. This Generalized Bézier (GB) patch is based on a new displacement scheme that builds up multi‐sided patches as a combination of a base patch, n displacement patches and an interior patch; this is considered to be an alternative to the Boolean sum concept. The input ribbons may have different degrees, but the final patch representation has a uniform degree. Interior control points—other than those specified by the user—are placed automatically by a special degree elevation algorithm. GB patches connect to adjacent Bézier surfaces with G1continuity. The control structure is simple and intuitive; the number of control points is proportional to those of quadrilateral control grids. The scheme is introduced through simple examples; suggestions for future work are also discussed.
Bibliography:istex:9CFD8C5195D60D984E92EB60F3AB89F94B0B33CF
ark:/67375/WNG-MHMXLRTC-9
ArticleID:CGF12833
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ISSN:0167-7055
1467-8659
DOI:10.1111/cgf.12833