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Trajectory planning based on latitude for painting on spherical surface

机译:基于绘画对球面绘画的轨迹规划

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A latitude method for the trajectory planning of spraying on spherical surface is presented. The latitude method is used to optimize the time and coating thickness in the spray painting. The start curve, the velocity of the spray gun and the width between neighboring paths are the main factors to affect the final coating quality. Spray painting time is determined by the start curve of the gun, while selection of the velocity and width contribute to the coating thickness together. Based on the paint deposition model of flat surface, the deposition model on the cylindrical surface is derived. The start curve on the spherical surface is derived from the Bounding-Box method. The spray gun velocity and the width between neighboring paths are determined through the optical function in which the coating thickness is the optimized target. The simulation shows that the latitude method presented in this paper can solve the problem of the trajectory planning on spherical surface.
机译:提出了一种喷涂轨迹轨迹规划的纬度方法。纬度方法用于优化喷涂中的时间和涂层厚度。起始曲线,喷枪的速度和相邻路径之间的宽度是影响最终涂层质量的主要因素。喷涂时间由枪的起始曲线确定,同时选择速度和宽度在一起有助于涂层厚度。基于平面的涂料沉积模型,推导出圆柱形表面上的沉积模型。球面上的起始曲线来自边界盒方法。通过光学功能确定相邻路径之间的喷枪速度和宽度,其中涂层厚度是优化的目标。仿真表明本文呈现的纬度方法可以解决球面上的轨迹规划的问题。

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