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Accurate profile measurement method for industrial stereo-vision systems

机译:适用于工业立体视觉系统的概况测量方法

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摘要

Purpose Profile measurement with boundary information plays a vital role in the detection of quality in the assembly of aviation parts. The purpose of this paper is to improve the evaluation accuracy of the aerodynamic shapes of airplanes, the profiles of large-sized parts need to be measured accurately. Design/methodology/approach In this paper, an accurate profile measurement method based on boundary reference points is proposed for the industrial stereo-vision system. Based on the boundary-reference points, the authors established a priori constraint for extracting the boundary of the measured part. Combining with the image features of background and the measured part, an image-edge compensation model is established to extract the boundary of the measured part. The critical point of a laser stripe on the edge of the measured part is extracted corresponding to the boundary constraint. Finally, as per the principle of binocular vision, the profile of the measured part is reconstructed. Finding Laboratory experiments validate the measurement accuracy of the proposed method which is 0.33 mm. In the analysis of results between the measured data and the theoretical model, the measuring accuracy of the proposed method was found to be significantly higher than that of the other traditional methods. Practical implication An aviation part was measured in the part-assembly shop by the proposed method, which verified the feasibility and effectiveness of this method. The research can realize the measurement of smooth surface boundary which can solve existing profile reconstruction problems for aviation parts. Originality/value According to the two-dimensional contour constraint, critical points of the laser strip sequence at the edge of measured part are extracted and the accurate profile reconstruction with the boundary is realized.
机译:目的型材测量与边界信息在航空部件组装中的质量检测中起着至关重要的作用。本文的目的是提高飞机空气动力形状的评价精度,需要准确地测量大型部件的曲线。本文设计/方法/方法,提出了一种基于边界参考点的准确轮廓测量方法,用于工业立体视觉系统。基于边界参考点,作者建立了提取测量部分边界的先验约束。结合背景和测量部分的图像特征,建立图像边缘补偿模型以提取测量部分的边界。对应于边界约束的测量部分边缘上的激光条的临界点。最后,根据双目视觉的原理,重建测量部分的轮廓。寻找实验室实验验证所提出的方法的测量精度为0.33mm。在测量数据与理论模型之间的结果分析中,发现所提出的方法的测量精度明显高于其他传统方法的测量精度。实际意义通过所提出的方法在部件组装商店中测量了航空部件,该方法验证了这种方法的可行性和有效性。该研究可以实现光滑表面边界的测量,可以解决航空部件的现有型材重建问题。根据二维轮廓约束的原创性/值,提取测量部分边缘处的激光带序列的临界点,并实现了与边界的准确型材重建。

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