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NSGA-II approach for proper choice of nodes and knots in B-spline curve interpolation

机译:NSGA-II在B样条曲线插值中正确选择节点和结的方法

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摘要

Describing data, obtained by various instruments, with an analytic function is one of the tasks that people often face in a wide variety of applications such as virtual reality, CAD design, reverse engineering, data visualization, medical imaging, and cultural relic restoration and so on. Moreover, non-uniform B-spline is an extensively-used tool for interpolation which is an effective means of describing data. In this paper, according to the geometric features reflected in the data points, a method for calculating the tangent vectors at the corresponding data points is proposed for reference. And based on the constraints on tangent vectors (calculated by the proposed reference method, can also be given beforehand) and control points, non-dominated sorting genetic algorithms-II, namely NSGA-II, is adopted for adaptive B-spline curve interpolation without knowing nodes and knots in advance. The resulting interpolation curve approximates the given tangent vectors and the data polyline, and it is more natural-looking, in general than those obtained by other methods. In addition, the new method works well in a higher degree. Testing results on the feasibility and universal applicability of the new method are also included. (C) 2020 Elsevier Ltd. All rights reserved.
机译:描述由各种仪器获得的数据,分析功能是人们经常面临各种应用中的任务之一,如虚拟现实,CAD设计,逆向工程,数据可视化,医学成像和文化遗物恢复等在。此外,非均匀的B样条是用于插值的广泛用工具,其是描述数据的有效手段。本文根据数据点反映的几何特征,提出了一种用于计算相应数据点处的切线矢量的方法以供参考。基于切线矢量的约束(通过所提出的参考方法计算,也可以预先给予)和控制点,非主导的分类遗传算法-II,即NSGA-II,用于自适应B样条曲线插值而没有提前了解节点和结。所得到的插值曲线近似于给定的切线和数据折线,通常比通过其他方法获得的更自然的观察。此外,新方法在更高的程度上运行良好。还包括对新方法的可行性和普遍适用性的测试结果。 (c)2020 elestvier有限公司保留所有权利。

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