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Multispectral system for reflectance reconstruction in the near-infrared region

机译:用于近红外区域反射率重建的多光谱系统

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摘要

We analyze the performance of a multispectral system that works in the near-infrared (NIR) region of the electromagnetic spectrum (NIR: 800-1000 nm). The system, which uses a CCD camera as a sensor with five acquisition channels, is capable of reconstructing the NIR spectral reflectance curves for a wide range of samples with a high degree of accuracy. We carried out a study of the sources of error in the experimental system, developed a luminance adaptation model to remove the dependence of the captured images on the exposure time of the camera and the f-number of the objective lens, and performed reconstructions of the spectral reflectances of a set of 80 samples. We achieved the best results by using a 12-bit camera, considering a different luminance adaptation transform for each channel, and by using the pseudoinverse reconstruction method. Under these conditions, the system provided mean percentages of reconstruction higher than 99.8percent and root-mean-square-error values lower than 0.17, and is therefore suitable for use as a spectrophotometric instrument.
机译:我们分析了在电磁光谱(NIR:800-1000 nm)的近红外(NIR)区域中工作的多光谱系统的性能。该系统使用CCD摄像机作为具有五个采集通道的传感器,能够以很高的精度为各种样品重建NIR光谱反射率曲线。我们对实验系统中的误差源进行了研究,开发了一种亮度适应模型,以消除所捕获图像对相机曝光时间和物镜f值的依赖性,并对图像进行重建。一组80个样品的光谱反射率。通过使用12位相机,考虑每个通道的不同亮度适应转换以及使用伪逆重构方法,我们获得了最佳结果。在这些条件下,该系统提供的平均重建百分比高于99.8%,均方根误差值低于0.17,因此适合用作分光光度仪。

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