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Differential evolution algorithm-based range image registration for free-form surface parts quality inspection

机译:基于差分演进算法的范围图像配准,用于自由形状表面零件质量检测

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摘要

Increasing demands on precision manufacturing of complex free-form surface parts have been observed in the past several years. Although some advanced techniques have been employed to solve the design and machining problems for such parts, quality inspection remains a difficult problem. Registration is a crucial issue in surface inspection; it is used to transform the design model and measurement model into a common coordinate system. The comparison results are then outputted in a report and displayed visually by color gradients. This paper presents a design model-based inspection method with range image registration, in which the measurement model is represented by a series of 3D discrete points. In the model preprocessing, the directed Hausdorff distance (DHD) method is employed for point cloud simplification, and a novel point descriptor is designed to evaluate the property of each point. Subsequently, a differential evolution (DE) algorithm-based optimizer is proposed for error evaluation. Combined with the properties of 3D points, the optimizer can measure the similarity between the design model and the measurement model with a recursive process. The proposed algorithms have been implemented and tested with several sets of simulated and real data. The experiment results illustrate that they are effective and efficient for free-form surface part quality inspection.
机译:在过去几年中已经观察到越来越多的对复杂自由形状表面部分的精确制造的需求。虽然已经采用了一些先进的技术来解决这些部件的设计和加工问题,但质量检验仍然是一个难题。注册是表面检查中的一个至关重要的问题;它用于将设计模型和测量模型转换为公共坐标系。然后在报告中输出比较结果,并通过颜色梯度在视觉上显示。本文介绍了一种基于设计模型的检查方法,其具有范围图像配准,其中测量模型由一系列3D离散点表示。在模型预处理中,采用指向的Hausdorff距离(DHD)方法用于点云简化,并且设计了一种新的点描述符来评估每个点的属性。随后,提出了一种基于差分演进(DE)算法的优化器进行错误评估。结合3D点的性质,优化器可以测量设计模型与测量模型之间的相似性,具有递归过程。已建议的算法已经实现和测试了多组模拟和实际数据。实验结果说明了它们对自由形状表面部分质量检查有效和有效。

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