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Degree reduction of NURBS curves
Authors:Yuan-Lung Lai  James Shih-Shyn Wu  Jui-Pin Hung  Jian-Hong Chen
Affiliation:1. Institute of Mechanical Engineering, National Chung-Hsing University, 250, Kuo-Kuang Rd., Taichung, Taiwan, 402
2. Department of Mechanical Engineering, Nanya Institute of Technology, 414, Sec. 3, Jung-Shan E. Rd., Chungli, Taiwan, 320
3. Department of Physical Therapy, Chung Shan Medical University, 110, Sec. 1, Chien-Kuo N. Rd., Taichung, Taiwan, 402
Abstract:Higher degree curves are used in applications because they are easier to manipulate interactively but require heavy computation. Most of the equations for curves used popularly in CAD software are of degree 2 and 3, because two curves of degree 3 can guarantee 2nd derivative continuity at the connection point. This study proposes a different but simpler method than any put forward before to deal with degree reduction of free-form curves. The reduced curves use the simplest knot vector type, i.e., the open uniform knot vector. Unlike other methods, this study does not modify or refine the knot vectors but perturb the control points globally. After obtaining an initial condition, a radiating web-like search algorithm is applied to detect the optimum positions. These NURBS curve formats reach basic industrial standards for CAD/CAM/CNC applications. By defining a global bound error function, this algorithm can achieve an optimum solution not only for NURBS curves but also Bézier/B-spline curves.
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