Department of Electronics and Information Technology, Lublin University of Technology, Nadbystrzycka 38D, 20-618 Lublin, Poland.
Department of Radiophysics and Computer Technologies, Belarusian State University, Nezavisimosti Avenue 4, 220030 Minsk, Belarus.
Sensors (Basel). 2022 May 31;22(11):4195. doi: 10.3390/s22114195.
The article considers the potential applicability of C12880MA and C11708MA Hamamatsu microspectrometers, which are characterized by an extremely compact design, occupying a small volume of several cubic centimeters, in portable spectrometric equipment with spatial resolution for monitoring the optical properties of condensed scattering media. The development of methods for determining the reduced scattering and absorption spectral coefficients of radiation from various scattering materials and products allows us to speak about the possibility of real-time control of the volume concentration of optically active components included in them, for example, fat and water in dairy products. For this, it is necessary to provide sufficiently accurate spectra of diffusely reflected broadband light radiation at different distances between the points of radiation entrance and registration. The aim of the manuscript is to assess the possibility of using the considered microspectrometers in compact devices for optical diagnostics and control of the optical properties of condensed scattering media. The features of the connection diagram of these microspectrometers and the necessary methods for correcting the initially obtained spectral dependencies of diffusive reflection, which will be of interest to developers of spectral diagnostic equipment, are considered in detail. The need to eliminate the influence of the inhomogeneity of dark counts of a CMOS photodiode array is shown. The hardware functions of the C12880MA and C11708MA Hamammatsu microspectrometers, as well as the AvaSpec 2048L fiber-optic spectrometer, were experimentally measured and compared. Methods for correcting the nonlinearity of their reading scales and light characteristics, as well as improving their equivalent spectral resolution using digital Wiener filtering, are described. It is shown that the equivalent spectral resolution of C12880MA and C11708MA microspectrometers can be improved by about 40% when recording smooth spectra, subject to the condition that the resulting side oscillations are small. It is pointed out that in order to reduce the level of side oscillations in the corrected spectra with improved resolution, it is necessary to ensure the smoothness of the original spectra and a good signal-to-noise ratio. A conclusion is made about the possibility of using the considered microspectrometers in portable spectrometric equipment with careful consideration of their characteristics, the features of their switching circuit, and the necessary software.
本文考虑了 C12880MA 和 C11708MA Hamamatsu 微型光谱仪的潜在适用性,它们的特点是极其紧凑的设计,体积仅为几立方厘米,可用于具有空间分辨率的便携式光谱仪设备,用于监测凝聚散射介质的光学特性。开发用于确定来自各种散射材料和产品的辐射的散射和吸收光谱系数的方法,使我们能够实时控制包含在其中的光活性成分的体积浓度,例如乳制品中的脂肪和水。为此,有必要在辐射入口和登记点之间的不同距离处提供漫反射宽带光辐射的足够精确的光谱。本文的目的是评估在用于光学诊断和控制凝聚散射介质光学特性的紧凑型设备中使用所考虑的微型光谱仪的可能性。详细考虑了这些微型光谱仪的连接图的特点以及校正最初获得的漫反射光谱依赖性所需的方法,这些方法将引起光谱诊断设备开发人员的兴趣。表明需要消除 CMOS 光电二极管阵列暗计数不均匀性的影响。实验测量并比较了 C12880MA 和 C11708MA Hamammatsu 微型光谱仪以及 AvaSpec 2048L 光纤光谱仪的硬件功能。描述了校正它们的读数刻度和光特性的非线性以及使用数字 Wiener 滤波改善其等效光谱分辨率的方法。结果表明,在满足小的边缘振动的条件下,当记录平滑的光谱时,可以将 C12880MA 和 C11708MA 微型光谱仪的等效光谱分辨率提高约 40%。指出为了降低校正分辨率后改善的光谱中的边缘振动水平,必须确保原始光谱的平滑度和良好的信噪比。得出的结论是,在仔细考虑其特性、切换电路的特点以及必要的软件的情况下,可以在便携式光谱仪设备中使用所考虑的微型光谱仪。