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Elitist clonal selection algorithm for optimal choice of free knots in B-spline data fitting.

Authors :
Gálvez, Akemi
Iglesias, Andrés
Avila, Andreina
Otero, César
Arias, Rubén
Manchado, Cristina
Source :
Applied Soft Computing; Jan2015, Vol. 26, p90-106, 17p
Publication Year :
2015

Abstract

Data fitting with B-splines is a challenging problem in reverse engineering for CAD/CAM, virtual reality, data visualization, and many other fields. It is well-known that the fitting improves greatly if knots are considered as free variables. This leads, however, to a very difficult multimodal and multivariate continuous nonlinear optimization problem, the so-called knot adjustment problem. In this context, the present paper introduces an adapted elitist clonal selection algorithm for automatic knot adjustment of B-spline curves. Given a set of noisy data points, our method determines the number and location of knots automatically in order to obtain an extremely accurate fitting of data. In addition, our method minimizes the number of parameters required for this task. Our approach performs very well and in a fully automatic way even for the cases of underlying functions requiring identical multiple knots, such as functions with discontinuities and cusps. To evaluate its performance, it has been applied to three challenging test functions, and results have been compared with those from other alternative methods based on AIS and genetic algorithms. Our experimental results show that our proposal outperforms previous approaches in terms of accuracy and flexibility. Some other issues such as the parameter tuning, the complexity of the algorithm, and the CPU runtime are also discussed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15684946
Volume :
26
Database :
Supplemental Index
Journal :
Applied Soft Computing
Publication Type :
Academic Journal
Accession number :
99700235
Full Text :
https://doi.org/10.1016/j.asoc.2014.09.030