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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Development of integrated acceleration/deceleration look-ahead interpolation technique for multi-blocks NURBS curves
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Development of integrated acceleration/deceleration look-ahead interpolation technique for multi-blocks NURBS curves

机译:多块NURBS曲线的集成加速/减速预读内插技术的开发

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Modern motion control adopts acceleration/deceleration before interpolation (ADBI) motion planning to eliminate path command errors. However, the individual velocity profiles might not be continuous at the junction of the blocks. Acceleration/deceleration after interpolation (ADAI) method may provide an alternative for solving the discontinuous problems, but it causes path command errors. In this paper, an integrated acceleration/deceleration interpolation (IAD) scheme which integrates the ADBI and ADAI modules is proposed. The ADBI provides a look-ahead function which plans the feedrate profiles based on chord errors, command errors, curvatures, and acceleration limits. Within the look-ahead function, the command error equation is utilized to determine the feedrate at the junction of adjacent blocks. Then the ADBI performs non-uniform rational B-spline (NURBS) interpolation using the planned feedrate profile and outputs the position points to the ADAI module. The ADAI module processes the points by a digital convolution technique such that the continuity of the block junction velocity is ensured. Finally, the IAD is applied to the multi-block NURBS interpolation to validate its effectiveness. Simulations and experiments are conducted to demonstrate the IAD scheme. It is shown that the IAD scheme can reduce the acceleration significantly at the junctions of the blocks under the given tolerance of the command error. Furthermore, the proposed algorithm can improve tracking and contour accuracies as compared to the hybrid multi-blocks look-ahead approach.
机译:现代运动控制采用插补之前的加减速(ADBI)运动计划来消除路径命令错误。但是,各个速度曲线在块的交界处可能不连续。插补后加减速(ADAI)方法可能为解决不连续问题提供了一种替代方法,但它会导致路径命令错误。本文提出了一种集成了ADBI和ADAI模块的集成加减速插值(IAD)方案。 ADBI提供了一个超前功能,该功能根据弦误差,命令误差,曲率和加速度极限来计划进给率曲线。在前瞻功能内,命令误差方程式用于确定相邻块交界处的进给率。然后,ADBI使用计划的进给率轮廓执行非均匀有理B样条(NURBS)插值,并将位置点输出到ADAI模块。 ADAI模块通过数字卷积技术处理这些点,从而确保了块结速度的连续性。最后,将IAD应用于多块NURBS插值以验证其有效性。进行仿真和实验以证明IAD方案。结果表明,在给定的命令误差容限下,IAD方案可以显着降低块交界处的加速度。此外,与混合多块预读方法相比,所提出的算法可以提高跟踪和轮廓精度。

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