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New morphological methods to generate two-dimensional curve offsets

机译:生成二维曲线偏移的新形态学方法

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摘要

For the purpose of generating 2D curve offsets used in 2.5D machining, four new methods based on morphological operations on different mathematical entities are presented in this paper. All of the methods, which lend themselves for parallel processing, exploit the idea that the boundaries formed by a circular structuring element whose center sweeps across the points on a generator/base curve comprise the entire offsets of the progenitor. The first approach, which is a carry-over from image processing, makes good use of morphological operations on binary images to produce 2D offsets via contour tracing algorithms. The second method, which is to rectify the high memory cost associated with the former technique, utilizes morphological operations on (boundary data) sets. The implementation of this basic technique is illustrated by two Matlab functions given in the paper. Despite its simplicity, the time complexity of this paradigm is found to be high. Consequently, the third method, which is evolved from the preceding one, reduces the time complexity significantly with the utilization of a geometric range search method. This technique, which has a considerable margin for improvement, is found to be suitable to be used as a part of the real-time motion command generator for CNC applications. Unlike the previous schemes, the final approach uses polygon operations to generate such curves. The run-time of this technique is highly governed by the complexity of the polygon overlay algorithm selected. The paper analyzes the complexity of each technique. Finally, the presented methods are evaluated (in terms of run-time and geometric accuracy) via two test cases where most CAD/CAM packages fail to yield acceptable results.
机译:为了生成在2.5D加工中使用的2D曲线偏移,本文提出了四种基于对不同数学实体进行形态学运算的新方法。所有适用于并行处理的方法都采用了这样一种思想,即由圆形结构元素形成的边界(其中心扫过生成器/基曲线上的点)包括了祖细胞的整个偏移量。第一种方法是图像处理的残留,它很好地利用了对二进制图像的形态学运算,以通过轮廓跟踪算法生成2D偏移。第二种方法是纠正与前一种技术相关的高存储成本,它利用对(边界数据)集的形态学运算。本文中给出的两个Matlab函数说明了该基本技术的实现。尽管简单,但发现该范例的时间复杂度很高。因此,从前一种方法演变而来的第三种方法利用几何范围搜索方法大大降低了时间复杂度。发现该技术有很大的改进余地,被发现适合用作CNC应用的实时运动命令生成器的一部分。与以前的方案不同,最终方法使用多边形操作来生成此类曲线。该技术的运行时间在很大程度上取决于所选多边形叠加算法的复杂性。本文分析了每种技术的复杂性。最后,通过两个大多数CAD / CAM软件包无法产生可接受结果的测试案例,对所提出的方法进行了评估(在运行时和几何精度方面)。

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