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Design on Odd-even Steps Third Order Approach Interpolation Algorithm for Logarithmic Curve

机译:对数曲线的奇数步骤三阶方法的设计

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摘要

Logarithmic curve interpolation is essential for precise machining conical cutters with constant rake and spiral angle in CNC machine. In this paper, a novel odd-even steps third order approach algorithm is presented to realize the logarithmic interpolation. In each interpolating cycle there are odd and even steps divided. At the odd step, the interpolating point moves in tangent direction for an instruction interpolation length. The even step is in succession to interpolate same length through the coordinate increments computed by using the Taylor Mean-value Theorem in third order approach algorithm for the interpolation point approaching the ideal curve closely. The third order approach interpolating formulae for calculating coordinate increments are deduced in the results with simplified arithmetic operations that can be quickly computed for real time application. Test results indicate the third order approach algorithm is featured with high accuracy, suitable to be executed by the 32-bit micro-processor in ARM9 embedded CNC system for multi-axis servo control to accurate grind the conical teeth.
机译:对数曲线插值对于CNC机中具有恒定耙和螺旋角的精确加工锥形切割器是必不可少的。本文介绍了一种新颖的偶数步骤三阶方法算法以实现对数插值。在每个内插循环中,存在奇数甚至步骤。在奇数步骤中,内插点在指令插值长度的切线方向上移动。偶数步骤连续地通过使用第三阶方法算法中的泰勒平均值定理来通过坐标增量来插入相同的长度,以密切地接近理想曲线的内插点。使用简化算术运算的结果,推导出计算坐标增量的三阶方法内插公式,其可以快速计算实时应用。测试结果表明,第三阶方法算法具有高精度,适用于ARM9嵌入式CNC系统中的32位微处理器,用于多轴伺服控制以精确研磨圆锥形齿。

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