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A two-stage CNC interpolation algorithm for corner smoothing trajectories with geometric error and dynamics constraints

机译:几何误差和动力学约束的角落平滑轨迹的两级CNC插值算法

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Comers among linear segments are normally smoothed in order to improve the CNC machining efficiency. The interpolation of the comer smoothing trajectories is important to guarantee high geometric accuracy and good dynamics performance. This paper proposes a two-stage interpolation algorithm for corner smoothing trajectories, which includes the off-line pre-processing stage and the on-line interpolation stage. The off-line pre-processing stage calculates the path lengths, and approximates the relation of spline parameters and spline lengths with 7th order polynomial splines within preset tolerance. The on-line interpolation stage generates interpolated drive commands with the trapezoidal acceleration profile, where chord errors and centripetal accelerations at transition comers are also constrained. Simulation and experiment results show that the proposed interpolation algorithm can improve the machining efficiency and satisfy the preset geometric error and dynamics constraints as well.
机译:线性段之间的聚光通常是平滑的,以提高CNC加工效率。 COMER平滑轨迹的插值对于保证高几何精度和良好的动力学性能非常重要。本文提出了一种用于拐角平滑轨迹的两阶段插值算法,包括离线预处理阶段和在线插值阶段。离线预处理阶段计算路径长度,并近似于预设公差内的第7阶多项式样条的花键参数和花键长度的关系。在线插值阶段产生具有梯形加速度曲线的内插驱动命令,其中在过渡旋转中的和弦误差和离心式加速度也被约束。仿真和实验结果表明,所提出的插值算法可以提高加工效率并满足预设的几何误差和动态约束。

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