光滑流形表面上等扇贝轨迹的最小时间运动规划

Xubing Chen, Ci Zhang, Pengbin Cao
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摘要

针对光滑流形表面等扇贝轨迹具有效率高、单元长、单元少等优点,本文采用s曲线轮廓实现最小时间运动规划。首先,讨论了线段、圆段和NURBS线段的轨迹模型。其次,用分段积分法描述了s曲线剖面的加速度方程、速度方程和位移方程。由于轨迹长度由刀具定位文件确定,最小时间运动规划转变为根据各单元的轨迹曲率、轨迹之间的连接以及机床的特性来寻找可行的和最高的速度。第三,开发时间模型软件time model App,对复杂的运动规划过程进行封装,并对加工时间进行预测。与已有的Kim模型相比,该模型在计算精度和元素类型方面具有更好的通用性。
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Minimum-Time Motion Planning for Iso-scallop Trajectories on Smooth Manifold Surfaces
For the merits of iso-scallop trajectories on smooth manifold surfaces, i.e., high efficiency, longer element and few elements, S-Curve profile is employed to realize minimum-time motion planning in the paper. First of all, the trajectory models of line segment, circle segment and NURBS segment are discussed. Next, the acceleration, velocity and displacement equations of S-curve profile are described with piecewise integrations. For the length of trajectories is predetermined by the cutter location files, the minimum-time motion planning has changed to find feasible and highest velocities limited by the trajectory curvature of each element, connections between trajectories and properties of machine tools. Thirdly, a time model software Time Model App is developed to encapsulate the complex motion planning process and predict the machining time. The prediction is better in calculation accuracy and versatile in the element types than the reported Kim model.
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