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Real-time B-spline Interpolator with Look-ahead Scheme for High-speed CNC Machine Tools

机译:具有超前计划的实时B样条插补器,用于高速CNC机床

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摘要

NC tool paths of digital CAD models are currently generated as a set of discrete data points. The CNC interpolator must convert these points into continuous machine tool axis motions. In order to achieve high-speed and high-accuracy machining, the development of a real-time interpolation algorithm is really indispensable, which can deal with a large number of short blocks and still maintain smooth interpolation with an optimal speed. In this paper, a real-time local cubic B-spline interpolator with look-ahead scheme is proposed for consecutive micro-line blocks interpolation. First, the consecutive micro-line blocks that satisfy the bi-chord error constraints are fitted into a Cl continuous cubic B-spline curve. Second, machining dynamics and tool path contour constrains are taken into consideration. Third, local cubic B-spline interpolator with an optimal look-ahead scheme is proposed to generate the optimal speed profile. Simulation and experiment are performed in real-time environment to verify the effectiveness of the proposed method. Compared with the conventional interpolation algorithm, the proposed algorithm reduces the machining time by 70%.
机译:当前,将数字CAD模型的NC工具路径生成为一组离散数据点。 CNC插补器必须将这些点转换为连续的机床轴运动。为了实现高速,高精度的加工,实时插补算法的开发是必不可少的,它可以处理大量的短程序段,并且仍以最佳速度保持平滑的插补。本文提出了一种具有超前性的实时局部三次B样条插值器,用于连续的微线块插值。首先,将满足双弦误差约束的连续微线块拟合为Cl连续三次B样条曲线。其次,要考虑加工动力学和刀具路径轮廓约束。第三,提出了具有最优预见方案的局部三次B样条插值器,以生成最优速度曲线。在实时环境中进行了仿真和实验,验证了所提方法的有效性。与传统的插值算法相比,该算法减少了70%的加工时间。

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