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首页> 外文期刊>International Journal of Computer Integrated Manufacturing >A visual inspection system of glass ampoule packaging defects: effect of lighting configurations
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A visual inspection system of glass ampoule packaging defects: effect of lighting configurations

机译:玻璃安瓿包装缺陷的视觉检测系统:照明配置的影响

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摘要

In any pharmaceutical packaging process, error rates must be kept very low to prevent defective or incorrect medicine from reaching the consumer. Published articles include a focus on the inspection of ampoule content for the presence of contaminants. Methods of inspection include optical cameras that record sequential images to detect the movement of floating objects via feature extraction and classification. Other methods employ spectral imaging and dying of ampoules to detect cracks. Thermal imaging is also used to inspect structural integrity and mechanical stress; however, this approach is marked by relatively high cost. This paper describes the enhancement of an optical vision-based inspection system for a glass ampoule packaging process. The developed solution involves a reconfiguration of the illumination system of the ampoule trays as well as reprogramming of a real-time optical camera. The camera is linked to the process controller and triggers the ejection of trays containing faulty ampoules. Eight defect types are of interest, namely: missing ampoules; ampoules without a label; crushed ampoules; ampoules with a broken tip - present or missing; ampoules with a broken base; cracked ampoules; empty ampoules. The original inspection system performance was inadequate and only detected 2 of the 8 defect types reliably. The improved system which is described in this paper has adequately detected all aforementioned defect types. Experiments show that the overall detection rates have improved from 55% to 99.6% on average. Average camera detection accuracy has improved from 38% to 99.5%. In addition, the false positives, i.e. rejection rates, were reduced from 45% to 7%.
机译:在任何药物包装工艺中,必须保持误差率非常低,以防止药物缺陷或不正确的药物到达消费者。已发表的文章包括重点是检查安瓿含量的污染物的存在。检查方法包括记录顺序图像以通过特征提取和分类检测浮动物体的移动的光学相机。其他方法采用谱成像和染色安瓿以检测裂缝。热成像还用于检查结构完整性和机械应力;然而,这种方法标志着成本相对较高。本文介绍了用于玻璃安瓿包装工艺的光视对检测系统的增强。开发的解决方案涉及重新配置安瓿托盘的照明系统以及实时光学相机的重新编程。相机与过程控制器相关联,并触发含有故障安瓿的托盘的喷射。八种缺陷类型是兴趣的,即:缺少安瓿;没有标签的安瓿;压碎安瓿;尖端的安瓿 - 当前或缺失;安瓿有破碎的基地;破裂的安瓿;空安瓿。原始检测系统性能不足,只能可靠地检测到8种缺陷类型。本文描述的改进系统已经充分检测到所有上述缺陷类型。实验表明,整体检测率平均从55%提高到99.6%。平均摄像机检测精度从38%提高到99.5%。此外,误报,即拒绝率,从45%降至7%。

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