Flexible circuit board image area identification method based on differential geometry

A flexible circuit board and image area technology, which is applied in image analysis, image enhancement, image data processing, etc., can solve the problems that do not meet the actual detection requirements, and the algorithm can only locate and identify a single one, so as to achieve reliable similarity metrics and meet The demand for defect detection and the effect of avoiding huge workload

Active Publication Date: 2019-12-06
SOUTH CHINA UNIV OF TECH
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  • Summary
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AI Technical Summary

Problems solved by technology

[0005]Because the defect types and detection standards of each component of FPC are different in practical applications, and most algorithms have the problem of only locating and identifying a single FPC component, so It is necessary to perform area recognition on the FPC image and adopt corresponding defect detection algorithms for different areas of the FPC
However, the existing FPC image processing technology often skips the recognition step and directly collects images of different parts in the implementation, which does not meet the actual detection requirements. Therefore, the present invention proposes an FPC image area recognition method based on differential geometry theory

Method used

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  • Flexible circuit board image area identification method based on differential geometry
  • Flexible circuit board image area identification method based on differential geometry
  • Flexible circuit board image area identification method based on differential geometry

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Embodiment

[0062] Such as figure 1 As shown, a method for identifying the image area of ​​a flexible circuit board based on differential geometry includes the following steps:

[0063] S1 collects the FPC surface image through the AOI detection equipment as the image to be classified;

[0064] The AOI detection equipment is mainly composed of image acquisition equipment, system electrical control equipment, image processing algorithm and data recording and processing system.

[0065] The image acquisition equipment includes a light source, a lens, a CCD camera, and a microscope; the electrical control equipment of the system includes a servo motor, an encoder, a driver, an electric precision stage, and a workbench air pump; the image processing algorithm includes a circuit, a gold surface and text portion detection algorithm; the data recording and processing system includes detection standards, defect locations and data analysis.

[0066] The present invention obtains the required FPC...

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Abstract

The invention discloses a flexible circuit board image area identification method based on differential geometry. The flexible circuit board image area identification method comprises the following steps: S1, collecting an FPC surface image as a to-be-classified image; S2, extracting the contour of the to-be-classified image based on a region growing method of adaptively selecting an initial seedpoint; S3, selecting a standard template contour, calculating the curvature of the standard template contour, and converting the curvature into a histogram; S4, calculating the discrete curvature of the contour of the to-be-classified image, and converting the discrete curvature into a histogram with the same group distance as the contour of the standard template; S5, evaluating the similarity between the contour of the to-be-classified image and the contour of the standard template by adopting an EMD distance; and S6 identification profile. According to the invention, the requirement of defect detection on a single FPC component in actual detection is met.

Description

technical field [0001] The invention relates to the field of FPC image processing, in particular to a differential geometry-based image region recognition method for a flexible circuit board. Background technique [0002] Flexible printed circuit board (Flexible Printed Circuit, FPC) is a relatively high-end product in the rigid printed circuit board (Printed Circuit Board, PCB) industry. For the quality of FPC, find and eliminate defective products as early as possible to avoid waste of raw materials, time and labor costs. [0003] Automatic Optical Inspection (AOI) is based on the principle of optical inspection, which can measure the physical parameters of the FPC surface and detect surface defects without contact. Compared with electrical inspection, it will not cause secondary damage to the FPC board. Compared with manual inspection, the detection efficiency and accuracy have been greatly improved, and it has the advantages of automatic, efficient, and multi-scale. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06T7/00G06T7/13G06T7/136G06K9/46G06K9/62
CPCG06T7/0004G06T7/13G06T7/136G06T2207/10004G06T2207/10024G06T2207/30141G06T2207/20036G06V10/44G06V10/507G06V10/752G06F18/24
Inventor 杜娟沈思昀姚灵芝
Owner SOUTH CHINA UNIV OF TECH
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