Visual color inspection with a hyperspectral camera: inline application for automotive parts production

E. Assunção, Magno Guedes, Fábio Miranda
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Abstract

The development of cars is becoming increasingly focused on colour, which is a major challenge for both suppliers and manufacturers. Manufacturers must establish strict colour tolerances for each coloured component and specify both colour and appearance. On the other hand, suppliers must maintain colour accuracy in part production, regardless of the type of material used, to ensure acceptance of colour by automotive manufacturers. In the colour industry, colour difference formulas are used to make unbiased judgments about whether manufactured goods should be approved or disapproved. These objective judgments are based on instrumental colour measurements that must accurately predict subjective colour variations. Hyperspectral imaging (HSI) has proven to provide helpful data for a variety of applications in numerous industries, including colour science. To measure and analyse colour differences between automotive parts, we proposed to use conventional colour science algorithms in conjunction with the Specim FX10 hyperspectral camera, which has a flexible infrastructure that can receive data from a Generic Interface for Cameras (GenICam) compatible with the Gigabyte Ethernet interface. The results showed that the use of hyperspectral imaging in production offers great potential for providing real-time colour information so that colour shifts can be detected early and costly errors in the production line can be avoided.
使用高光谱相机进行视觉色彩检测:用于汽车零部件生产的内联应用
汽车的发展越来越注重颜色,这对供应商和制造商来说都是一个重大挑战。制造商必须为每种有色组件建立严格的颜色公差,并详细说明颜色和外观。另一方面,无论使用何种材料,供应商都必须在零件生产中保持颜色的准确性,以确保汽车制造商接受颜色。在色彩行业中,色差公式被用来对制成品是否应该被批准做出公正的判断。这些客观判断是基于仪器颜色测量,必须准确预测主观颜色变化。高光谱成像(HSI)已被证明可以为包括色彩科学在内的许多行业的各种应用提供有用的数据。为了测量和分析汽车零部件之间的色差,我们建议将传统的色彩科学算法与specm FX10高光谱相机结合使用,该相机具有灵活的基础设施,可以从与千兆字节以太网接口兼容的相机通用接口(GenICam)接收数据。结果表明,在生产中使用高光谱成像为提供实时颜色信息提供了巨大的潜力,从而可以及早发现颜色变化,避免生产线上代价高昂的错误。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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