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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Optimal Number of Control Points for Fitting B-Splines in Wind Turbine Blade Measurement
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Optimal Number of Control Points for Fitting B-Splines in Wind Turbine Blade Measurement

机译:风力涡轮机叶片测量中配件B样条的最佳控制点数

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The manufacture of large-scale products such as aircraft and wind turbines needs detailed inspection to ensure the required dimensional tolerances are met. A coherent laser radar with an assisting mirror was used in this research to inspect a half-size wind turbine blade. This paper investigates the optimal distribution of inspection points that would produce the most accurate B-Spline fitting to the CAD model surfaces and so shorten the inspection and analysis process without compromising on accuracy. Even though the optimal solution was found to be points with 100 mm spacing on a moderate surface gradient and with 20-25 mm spacing on a more severe surface gradient, the findings suggest the employment of a non-uniform distribution would produce a more accurate fitting. This paper also explores data alignment by Degree of Freedom constraints with a triple B-Spline and investigates whether denser data points would improve the transformation. The optimal solution was found to be constraining movement in Z, Rx and Ry. Therefore, to achieve better transformation, surfaces were treated based on their gradient. This resulted in a constraint in X, Y and Z, and Ry for a moderate gradient and Y, Z and Rz for a more severe gradient. The optimal number of inspection points for fitting a B-Spline on a half-size blade was found to be 18 points for the front section with 100 mm spacing, 15 points for the back section with 100 mm spacing, and between 14 and 18 points with 20-25 mm spacing on the base section.
机译:制造大型产品,如飞机和风力涡轮机需要详细检查以确保满足所需的尺寸公差。在该研究中使用具有辅助镜的相干激光雷达,以检查半尺寸的风力涡轮机叶片。本文调查了对CAD模型表面的最精确的B样条配合的检测点的最佳分布,因此缩短了检查和分析过程,而不会损害精度。即使发现最佳解决方案是在适度的表面梯度上具有100mm间距的点,并且在更严重的表面梯度上具有20-25毫米间距,结果表明,采用非均匀分布将产生更准确的配件。本文还通过三重B样条探讨了自由度限制程度的数据对齐,并研究了更密度数据点是否会改善变换。发现最佳解决方案是在Z,Rx和Ry中约束运动。因此,为了实现更好的转化,表面基于梯度处理。这导致X,Y和Z的约束,以及用于更严重的梯度的中等梯度和y,z和Rz的Ry。在半尺寸刀片上拟合B样条的最佳检查点的检验点为前部的前截面为18分,后截面为15分,带有100mm间距,14至18点之间基部截面上有20-25毫米。

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