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Direct radius compensation and evaluation method for quadric surface at arbitrary position in space

机译:基于空间任意位置的二次表面直接半径补偿与评价方法

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摘要

A direct radius compensation and evaluation method for quadric surface at arbitrary position in space with coordinate measuring machining (CMM) is proposed. The radius error is compensated by the optimization model directly based on minimum condition principle with the object function value calculated by angle subdivision approach algorithm. The model is optimized by Improved Particle Swarm Optimization (IPSO) algorithm. Particle Swarm Optimization (PSO) improved by the idea of optimized analytical method, natural selection and crossover with the maximum distance as the object function based on minimum condition principle is proposed. In the experiment, the direct method and the usual method based on B-spline are employed to evaluate the quadric profile error and compare. The direct method result is 0.1811mm, more accurate than the usual method result 0.2522mm. Experimental evidence shows that the direct method is robust and efficient.
机译:提出了一种具有坐标测量加工(CMM)在空间中任意位置的直接半径补偿和评估方法。优化模型基于最小条件原理,通过角度细分方法算法计算的对象功能值,通过优化模型来补偿RADIUS误差。该模型由改进的粒子群优化(IPSO)算法进行了优化。提出了粒子群优化(PSO)通过优化的分析方法的思想,提出了基于最小条件原理的对象功能的最大距离的自然选择和交叉。在实验中,采用基于B样条曲线的直接方法和通常方法来评估二次轮廓误差并进行比较。直接方法结果为0.1811mm,比通常的方法结果更准确为0.2522mm。实验证据表明,直接方法是稳健和有效的。

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