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The Construction of Curves and Surfaces Using Numerical Optimization TechniquesNumerical optimization techniques are playing an increasing role in curve and surface construction. Often difficult problems in curve and surface construction, especially when some aspect of shape control is involved, can be phrased as a constrained optimization problem. Four such classes of problems are explored: parametric curve fitting with non-linear shape constraints; explicit surface fitting with linear shape constraints; surface fitting to scattered data giving rise to ill-posed problems; finally, variable knot problems. In each of these problems there is a nonlinear aspect: either the shape of the curve or surface is important for manufacturing or engineering reasons or the shape affects the convergence of numerical algorithms which use the curve or surface or the placement of knots affects the accuracy of the fits. In all cases the class of functions used is that of parametric spline curves and tensor or direct product spline surfaces. The reason for choosing this class is that splines provide flexible models that are easily evaluated and stored. Furthermore, the B-spline representation of splines leads to convenient expressions for shape control over regions.
Document ID
19850020253
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Ferguson, D. R.
(Boeing Computer Services Co. Seattle, WA, United States)
Date Acquired
August 12, 2013
Publication Date
June 1, 1985
Publication Information
Publication: NASA. Langley Research Center Computational Geometry and Computer-Aided Design
Subject Category
Numerical Analysis
Accession Number
85N28565
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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