Development of a polarimetric thermal imager calibration method

Valentin Kolobrodov, B. Sokol
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Abstract

Measurement of thermal imager characteristics is important for the reliable and efficient operation of the device in various fields, including science, medicine, and industry. Incorrect measurements can lead to errors, which can be critical, especially for military-grade thermal imagers. This article is dedicated to developing a method for monitoring the output parameters of polarimetric thermal imagers based on calibration. During calibration, the following operations are proposed: visual inspection, functionality check, measurement of polarimetric thermal imager parameters, and evaluation of measurement uncertainties. In this article, the controlled parameters of the polarimetric thermal imager are the measured for device temperature and NETD, Noise Equivalent Temperature Difference. For these parameters, a measurement model, a measurement function, and an uncertainty budget have been developed. The uncertainty budget includes only the main and most influential uncertainty components. This methodology can only be used for one type of polarimetric thermal imager, where the determination of the radiation polarization state is achieved by rotating a phase plate.
开发偏振热成像仪校准方法
在科学、医学和工业等各个领域,热成像仪特性的测量对于设备的可靠和高效运行非常重要。不正确的测量会导致误差,尤其是对军用级热成像仪而言,这可能是至关重要的。本文致力于开发一种基于校准的偏振红外热像仪输出参数监测方法。在校准过程中,提出了以下操作:目视检查、功能检查、偏振式热成像仪参数测量和测量不确定性评估。在本文中,偏振式热成像仪的受控参数是设备温度和 NETD(噪声等效温差)的测量值。针对这些参数,开发了测量模型、测量函数和不确定性预算。不确定性预算只包括主要的和影响最大的不确定性成分。这种方法只能用于一种偏振热成像仪,即通过旋转相位板来确定辐射偏振状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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