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首页> 外文期刊>IEEE transactions on automation science and engineering >Variance-Minimization Iterative Matching Method for Free-Form Surfaces—Part II: Experiment and Analysis
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Variance-Minimization Iterative Matching Method for Free-Form Surfaces—Part II: Experiment and Analysis

机译:自由曲面的方差最小化迭代匹配方法-第二部分:实验与分析

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In the first part of this paper, a free-form surface matching method called variance-minimization matching (VMM) was proposed to address uneven/open point distributions and measuring noise. The convergence property and sensitivity to measuring defects were theoretically studied. In the second part of this paper, a series of experiments are presented to verify the feasibility of the proposed method in free-form surface matching. The experiments are divided into four sets: a measuring defects experiment, a noise experiment, a convergence experiment, and an artificial experiment. In the first set of experiments, the existing methods are prone to becoming trapped in a local optimum affected by uneven/open point distributions, which shows that measured points incline toward dense areas. However, in VMM, there is little inclination regardless of the increase in the number of measuring defects. In the second set of experiments, sensitivity to varying noise is tested. The results show that VMM helps prevent unstable sliding in the presence of Gaussian noise. In the third set of experiments, we compare convergence speed and convergence stability under different initial positions. It is verified that VMM exhibits the quadratic convergence. Finally, a set of artificial experiments is implemented, revealing that the proposed method is appropriate for use in automated manufacturing processes such as geometric inspection and allowance distribution.Note to Practitioners-Measuring defects usually occur when using a scanning device to obtain the measured points of a workpiece. Weakening the effect of measuring defects on matching results is critical to promoting manufacturing automation. This paper proposes a new method called variance-minimization matching (VMM) that considers measuring defects. In the first part of this paper, the modeling and theoretical analysis of VMM were introduced. In the second part of this paper, simulated experiments are performed to verify the feasibility of VMM in addressing uneven/open point distributions, measuring noise, and large initial positions. Next, artificial experiments employing VMM in geometric inspection and allowance distribution are presented. The proposed method also applies to other automated manufacturing processes, such as workpiece localization, deformation analysis, and complex parts repair.
机译:在本文的第一部分中,提出了一种自由形式的表面匹配方法,称为方差最小化匹配(VMM),以解决不均匀/开放点分布和测量噪声的问题。从理论上研究了收敛性和对缺陷测量的敏感性。在本文的第二部分,提出了一系列实验,以验证该方法在自由曲面匹配中的可行性。实验分为四组:测量缺陷实验,噪声实验,收敛实验和人工实验。在第一组实验中,现有方法易于陷入受不均匀/开放点分布影响的局部最佳状态,这表明测量点向密集区域倾斜。但是,在VMM中,与测量缺陷数量的增加无关,几乎没有倾斜度。在第二组实验中,测试了对变化噪声的敏感性。结果表明,在存在高斯噪声的情况下,VMM有助于防止不稳定的滑动。在第三组实验中,我们比较了不同初始位置下的收敛速度和收敛稳定性。验证了VMM具有二次收敛性。最后,进行了一组人工实验,表明所提出的方法适用于自动化制造过程,例如几何检查和余量分配。从业人员的注意事项-测量缺陷通常在使用扫描设备获取工件的测量点时发生。一个工件。减弱测量缺陷对匹配结果的影响对于促进制造自动化至关重要。本文提出了一种新的方法,称为方差最小匹配(VMM),该方法考虑了测量缺陷。在本文的第一部分,介绍了VMM的建模和理论分析。在本文的第二部分中,进行了模拟实验,以验证VMM在解决不均匀/开口点分布,测量噪声和较大初始位置方面的可行性。接下来,介绍了使用VMM进行几何检查和余量分配的人工实验。所提出的方法还适用于其他自动化制造过程,例如工件定位,变形分析和复杂零件修复。

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