首页> 外文会议>The Second International Conference on Precision Engineering and NANO Technology (ICPN '2002) Oct 28-30, 2002 Changsha, China >A New Algorithm of Minimum Zone for Rapid Evaluating Straightness with Large Number of Samples
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A New Algorithm of Minimum Zone for Rapid Evaluating Straightness with Large Number of Samples

机译:快速评估带有大量样本的直线度的最小区域新算法

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The number of samples should be large enough and the computing speed should be as fast as possible for exactly evaluating the value of form errors and decreasing the value of their uncertainties. This view has been verified by the research of MZ (minimum zone) evaluation form errors and their uncertainties. A new algorithm of MZ method for evaluating Straightness error of surface line element, which is suitable for large number of samples, is put forward in this paper. It is the valid characteristic point method with the rapidly contracted constraint zone. Its mathematical model is established, its fundamental is illustrated in detail and its basic procedure is described. By applying the judging criteria of alternate and characteristic points to search the gradient of enveloping line, the new algorithm constructs automatically a constraint zone of the gradient of the envelope line of the MZ and contracts it rapidly. It searches and finds quickly the gradient of the enveloping lines of the MZ and gets exactly the minimum value of the Straightness error. Its compute complexity is analyzed. The new algorithm has many advantages such as getting the minimum value of the Straightness error in first iteration, fast calculation speed and the maximum number of iterations only O (2log_2 n) ( n represents the number of samples). The new algorithm can be applied to CMM ( coordinate measuring machine) that can accomplishment MZ evaluating straight-ness and uncertainty of Straightness error with large number samples and high evaluation accuracy.
机译:样本的数量应足够大,并且计算速度应尽可能快,以准确评估形式误差的值并减少不确定性的值。 MZ(最小区域)评估形式误差及其不确定性的研究证实了这一观点。提出了一种适用于大量样品的MZ法评价面线元直线度误差的新算法。这是约束区域快速收缩的有效特征点方法。建立了数学模型,详细说明了其基本原理,并描述了其基本过程。通过应用交替点和特征点的判断准则来搜索包络线的坡度,新算法自动构造了MZ包络线坡度的约束区域并迅速收缩。它搜索并快速找到MZ包围线的坡度,并精确地获得直线度误差的最小值。分析了其计算复杂度。新算法具有很多优点,例如获得第一次迭代中的直线度误差的最小值,快速的计算速度以及仅O(2log_2 n)(n表示样本数)的最大迭代次数。该新算法可应用于坐标测量机,该坐标测量机可以完成MZ评估直线度和直线度误差的不确定性,且样品数量大且评估精度高。

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