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A liquid crystal tunable filter based shortwave infrared spectral imaging system: Calibration and characterization

机译:基于液晶可调滤波器的短波红外光谱成像系统:校准和表征

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摘要

Calibration is a critical step for developing spectral imaging systems. This paper presents a systematic calibration and characterization approach for a liquid crystal tunable filter (LCTF) based shortwave infrared (SWIR) spectral imaging system. A series of tests were conducted to validate the linearity of the system output, measure the field of view of the spectral imager, increase the system spectral sensitivity, test the spatial and spectral resolution of the system, evaluate the system stability and image distortion, and reduce the spectral noise of the system output. Results showed that the system had an angle of view of 6.98 degrees and a spatial resolution of 158 mu m. The spectral sensitivity of the system was corrected by controlling the camera exposure time and gain, which increased the signal to noise ratio of the system by 16.5%. Test results also verified the system spectral accuracy and linearity (r > 0.999). The system output was proven to be stable and image distortion was not perceivable. Results of calibration tests indicated that this system satisfied the design criteria in both spatial and spectral domains. The calibration methods presented here are applicable to the LCTF-based spectral imaging systems in other applications. Published by Elsevier B.V.
机译:校准是开发光谱成像系统的关键步骤。本文提出了一种基于液晶可调滤波器(LCTF)的短波红外(SWIR)光谱成像系统的系统校准和表征方法。进行了一系列测试,以验证系统输出的线性度,测量光谱成像器的视场,提高系统光谱灵敏度,测试系统的空间和光谱分辨率,评估系统稳定性和图像失真,以及降低系统输出的频谱噪声。结果表明,该系统的视角为6.98度,空间分辨率为158μm。通过控制相机的曝光时间和增益,可以校正系统的光谱灵敏度,从而使系统的信噪比提高了16.5%。测试结果还验证了系统的光谱精度和线性度(r> 0.999)。系统输出被证明是稳定的,并且图像失真是不可察觉的。校准测试的结果表明,该系统在空间和光谱域均满足设计标准。此处介绍的校准方法适用于其他应用中基于LCTF的光谱成像系统。由Elsevier B.V.发布

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