EVALUATION OF UNCERTAINTY OF INFRARED THERMOMETERS WHEN MEASURING BODY TEMPERATURE

Nabi Iskandarov, Elmin Baghishov Nabi Iskandarov, Elmin Baghishov
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Abstract

As we know from biophysics, infrared tympanic thermometers are easy to use and have a fast response time. They are widely used to measure human body temperature. Measurement accuracy and uncertainty are the most important performance indicators for these measuring instruments. This study evaluated the performance of two infrared tympanic thermometers, the Brown THT-3020 and the OMRON MC-510. The temperature of the temperature calibrator was changed to serve as the standard temperature of the "black body". The measurement errors for the two measuring instruments were reduced by the calibration equation. The predicted values meet the requirements of the ASTM standard. Sources of uncertainty include standard deviations of repetition at constant temperature or predicted values of the calibration equation, reference standard values, and resolution. Uncertainty analysis shows that the uncertainty of the calibration equation is the main source of combined uncertainty. The ambient temperature did not significantly affect the measured performance. The accuracy of infrared tympanic thermometers can be increased by the specified calibration equations. Keywords: infrared tympanic thermometer, metrological support, calibration equation, uncertainty, metrology
红外体温计测量体温时的不确定度评定
从生物物理学的角度来看,红外鼓室温度计使用方便,响应时间快。它们被广泛用于测量人体体温。测量精度和不确定度是这些测量仪器最重要的性能指标。本研究评估了Brown ht -3020和OMRON MC-510两种红外鼓室温度计的性能。将温度校准器的温度改为“黑体”的标准温度。通过标定方程减小了两种测量仪器的测量误差。预测值符合ASTM标准的要求。不确定度的来源包括恒温重复的标准偏差或校准方程的预测值、参考标准值和分辨率。不确定度分析表明,标定方程的不确定度是组合不确定度的主要来源。环境温度对测量性能没有显著影响。通过规定的标定方程,可以提高红外鼓室温度计的精度。关键词:红外鼓室温度计,计量支架,标定方程,不确定度,计量学
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