Min Kyung-Pyo, Kim Jaehwan, Song Kyo D, Kim Gi-Woo
Department of Mechanical Engineering, Inha University, Incheon 22212, Korea.
Department of Engineering, Norfolk State University, Norfolk, VA 23504, USA.
Sensors (Basel). 2019 Aug 12;19(16):3528. doi: 10.3390/s19163528.
This paper presents a miniature spectrometer fabricated based on a G-Fresnel optical device (i.e., diffraction grating and Fresnel lens) and operated by an image-processing algorithm, with an emphasis on the color space conversion in the range of visible light. The miniature spectrometer will be cost-effective and consists of a compact G-Fresnel optical device, which diffuses mixed visible light into the spectral image and a μ-processor platform embedded with an image-processing algorithm. The RGB color space commonly used in the image signal from a complementary metal-oxide-semiconductor (CMOS)-type image sensor is converted into the HSV color space, which is one of the most common methods to express color as a numeric value using hue (), saturation (), and value () via the color space conversion algorithm. Because the HSV color space has the advantages of expressing not only the three primary colors of light as the but also its intensity as the , it was possible to obtain both the wavelength and intensity information of the visible light from its spectral image. This miniature spectrometer yielded nonlinear sensitivity of hue in terms of wavelength. In this study, we introduce the potential of the G-Fresnel optical device, which is a miniature spectrometer, and demonstrated by measurement of the mechanoluminescence (ML) spectrum as a proof of concept.
本文介绍了一种基于G-菲涅耳光学器件(即衍射光栅和菲涅耳透镜)制造并通过图像处理算法运行的微型光谱仪,重点在于可见光范围内的颜色空间转换。该微型光谱仪具有成本效益,由一个紧凑的G-菲涅耳光学器件组成,该器件将混合可见光扩散为光谱图像,以及一个嵌入图像处理算法的微处理器平台。来自互补金属氧化物半导体(CMOS)型图像传感器的图像信号中常用的RGB颜色空间通过颜色空间转换算法转换为HSV颜色空间,这是使用色调(H)、饱和度(S)和值(V)将颜色表示为数值的最常用方法之一。由于HSV颜色空间不仅具有将光的三原色表示为H,还具有将其强度表示为V的优点,因此可以从其光谱图像中获得可见光的波长和强度信息。这种微型光谱仪在波长方面产生了色调的非线性灵敏度。在本研究中,我们介绍了作为微型光谱仪的G-菲涅耳光学器件的潜力,并通过测量机械发光(ML)光谱作为概念验证进行了演示。