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Convexity-preserving interpolation of trigonometric polynomial curves with a shape parameter

机译:具有形状参数的三角多项式曲线的保凸插值

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摘要

In computer aided geometric design (CAGD), it is often needed to produce a convexity-preserving interpolating curve according to the given planar data points. However, most existing pertinent methods cannot generate convexity-preserving interpolating transcendental curves; even constructing convexity-preserving interpolating polynomial curves, it is required to solve a system of equations or recur to a complicated iterative process. The method developed in this paper overcomes the above drawbacks. The basic idea is: first to construct a kind of trigonometric polynomial curves with a shape parameter, and interpolating trigonometric polynomial parametric curves with C~2 (or G~1) continuity can be automatically generated without having to solve any system of equations or do any iterative computation. Then, the convexity of the constructed curves can be guaranteed by the appropriate value of the shape parameter. Performing the method is easy and fast, and the curvature distribution of the resulting interpolating curves is always well-proportioned. Several numerical examples are shown to substantiate that our algorithm is not only correct but also usable.
机译:在计算机辅助几何设计(CAGD)中,经常需要根据给定的平面数据点生成保留凸度的插值曲线。但是,大多数现有的相关方法无法生成保留凸度的内插先验曲线。即使构造保留凸性的插值多项​​式曲线,也需要求解方程组或重新进行复杂的迭代过程。本文开发的方法克服了上述缺点。基本思想是:首先构造具有形状参数的三角多项式曲线,然后可以自动生成具有C〜2(或G〜1)连续性的插值三角多项式参数曲线,而无需求解任何方程组或任何迭代计算。然后,可以通过形状参数的适当值来保证构造曲线的凸性。该方法的执行过程简单,快速,并且所得插值曲线的曲率分布始终匀称。显示了几个数值示例,以证明我们的算法不仅正确而且可用。

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