Predicting the performance of low-cost color instruments for color identification

计算机科学 比色法 人工智能 色差 测量仪器 颜色测量 计算机视觉 光学 物理 GSM演进的增强数据速率 热力学
作者
Eric Kirchner,Pim Koeckhoven,Keshav Sivakumar
出处
期刊:Journal of the Optical Society of America [The Optical Society]
卷期号:36 (3): 368-368 被引量:4
标识
DOI:10.1364/josaa.36.000368
摘要

During the past few years, several instruments for color measurement have become commercially available at unprecedented low prices. Although these instruments are no spectrophotometers, their price-performance ratio may be attractive for applications that do not require the high accuracy of traditional instruments. We investigated the performance of this class of instruments. These instruments typically do not provide spectral reflectance data, and some do not even produce colorimetric data such as CIELab coordinates. Therefore, in this investigation we express performance of the devices as the percentage of correctly identified color chips in color documentations (fan decks) such as those from RAL and Dulux CP5. Based on statistical physics, we develop a mathematical model that predicts the performance of a low-cost color instrument. This performance is shown to depend mainly on (i) the measurement precision of the instrument, and on (ii) the density of chip color coordinates in the color documentation. The new model makes it possible to compare test results from different instruments, even if they were obtained with different color documentations. The model also can be used to help design an efficient quality control test for the instruments, and to design new color documentations for which the instrument gives superior performance.

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