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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A novel approach to the inspection of deformable bodies by adapting the coherent point drift algorithm and using a clustering methodology
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A novel approach to the inspection of deformable bodies by adapting the coherent point drift algorithm and using a clustering methodology

机译:一种通过调整相干点漂移算法和使用聚类方法来检查可变形体的新方法

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The dimensional and geometric inspection of non-rigid mechanical parts still presents a real challenge to the automotive and aerospace industry. Much research has been devoted to automating the inspection of these parts in order to eliminate the cost of specialized fixtures that cause productivity problems for manufacturers. A registration step between the part' 31s nominal CAD model and its corresponding scan is required for an automatic inspection. The coherent point drift (CPD) is one of the existing algorithms for registration and is widely used in imaging applications. It has been recently adapted with regard to the mechanical field for the fixtureless dimensional inspection problems of deformable bodies, notably the IDB-ACPD algorithm. In this paper, an improvement of the optimization phase by reformulating the objective function of the algorithm is put forward. A correction matrix associated with the importance of each measurement point, and therefore with the local rigidity of the part during the registration operation, was introduced and incorporated. In addition, the measurement points representing the same rigidity have been clustered based on mechanical metrics using a fuzzy c-mean algorithm. The effectiveness of the proposed approach is demonstrated on different case studies from the transport industry and the results provide an improved registration of non-rigid parts leading to better dimensional and geometric errors detection.
机译:非刚性机械零件的尺寸和几何检测仍然对汽车和航空航天工业呈现出真正的挑战。已经致力于自动化这些部件的努力,以消除制造商的生产率问题的专用固定装置的成本。自动检查需要部件'31S标称CAD模型之间的注册步骤及其相应的扫描。相干点漂移(CPD)是用于注册的现有算法之一,并且广泛用于成像应用。最近已经在可变形体的固定尺寸检查问题的机械领域进行了调整,特别是IDB-ACPD算法。本文提出了通过重新制定算法的目标函数来改进优化阶段。介绍并掺入了与每个测量点的重要性相关联的校正矩阵,因此在注册操作期间零件的局部刚度。另外,使用模糊C均值算法基于机械指标聚集代表相同刚度的测量点。拟议方法的有效性在运输业的不同案例研究中证明了结果,结果提供了改进的非刚性部件登记,导致更好的尺寸和几何误差检测。

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