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Fast acquisition of reflectance spectra using wide spectral lines

机译:使用宽光谱线快速获取反射光谱

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摘要

We analyze a recently proposed technique for fast acquisition of the two-dimensional (2D) spatial distribution of reflectance spectra to figure out how much its ability of distinguishing almost similar spectra declines with increase of the spectral line bandwidth of the light source. This analysis was carried out using the experimentally measured reflectance spectra of four metameric samples and simulating the system response to an illumination by spectral lines with variable bandwidth. It was shown that the metameric samples are distinguishable even when the bandwidth of illuminating lines is 20–30 nm. A wider bandwidth allows implementation of simultaneous illumination of an object that leads to a diminution of the acquisition time of 2D-multispectral images due to both faster operation in the parallel mode of Light-emitting diodes (LEDs) switching and higher output power.
机译:我们分析了最近提出的用于快速获取反射光谱的二维(2D)空间分布的技术,以弄清其分辨几乎相似光谱的能力随光源光谱线带宽的增加而下降了多少。使用四个异聚体样品的实验测量反射光谱,并通过可变带宽的光谱线模拟系统对照明的响应,从而进行了此分析。结果表明,即使照明线的带宽为20–30 nm,同分异构体样品也可以区分。较宽的带宽允许实现对象的同时照明,这既由于在发光二极管(LED)开关的并行模式下更快的操作速度又有更高的输出功率而导致2D多光谱图像的采集时间缩短。

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