Institute of Physics, Nanotechnology and Telecommunications, Peter the Great St. Petersburg Polytechnic University, 195251 St. Petersburg, Russia.
Institute of Systems and Robotics, University of Coimbra, Rua Silvio Lima-Polo II, 3030-290 Coimbra, Portugal.
Sensors (Basel). 2020 Nov 5;20(21):6304. doi: 10.3390/s20216304.
Smartphone-based optical spectrometers allow the development of a new generation of portable and cost-effective optical sensing solutions that can be easily integrated into sensor networks. However, most commonly the spectral calibration relies on the external reference light sources which have known narrow spectral lines. Such calibration must be repeated each time the fiber and diffraction grating holders are removed from the smartphone and reattached. Moreover, the spectrometer wavelength scale can drift during the measurement because of the smartphone temperature fluctuations. The present work reports on a novel spectral self-calibration approach, based on the correspondence between the light wavelength and the hue features of the spectrum measured using a color RGB camera. These features are caused by the nonuniformity of camera RGB filters' responses and their finite overlap, which is a typical situation for RGB cameras. Thus, the wavelength scale should be externally calibrated only once for each smartphone spectrometer and can further be continuously verified and corrected using the proposed self-calibration approach. An ability of the plug-and play operation and the temperature drift elimination of the smartphone spectrometer was experimentally demonstrated. Conducted experiments involved interrogation of optical fiber Fabry-Perot interferometric sensor and demonstrated a nanometer-level optical path difference resolution.
基于智能手机的光学光谱仪使得新一代便携式、低成本的光学传感解决方案成为可能,这些方案可以很容易地集成到传感器网络中。然而,大多数情况下,光谱校准依赖于具有已知窄谱线的外部参考光源。每次从智能手机上取下光纤和衍射光栅支架并重新安装时,都必须重复这种校准。此外,由于智能手机温度波动,光谱仪的波长刻度会在测量过程中漂移。本工作报告了一种新颖的光谱自校准方法,该方法基于使用彩色 RGB 相机测量的光谱的光波长与色调特征之间的对应关系。这些特征是由相机 RGB 滤波器响应的不均匀性及其有限的重叠引起的,这是 RGB 相机的典型情况。因此,对于每个智能手机光谱仪,仅需外部校准一次波长刻度,并且可以使用所提出的自校准方法进一步进行连续验证和校正。实验证明了智能手机光谱仪的即插即用操作能力和温度漂移消除能力。进行的实验涉及光纤法布里-珀罗干涉传感器的询问,并展示了纳米级的光程差分辨率。