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An empirical method for improving accuracy of human eye temperature measured by uncooled infrared thermal imager

An empirical method for improving accuracy of human eye temperature measured by uncooled infrared thermal imager
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摘要 In order to reduce the temperature measurement error with the uncooled infrared thermal imager, experiments were conducted to evaluate the effects of environment temperature and measurement distance on the measurement error of human eye temperature. First, the forehead temperature was used as an intermediate variable to obtain the actual temperature of human eyes. Then, the effects of environment temperature and measurement distance on the temperature measurement were separately analyzed. Finally, an empirical model was established to correlate actual eye temperature with the measured temperature, environment temperature, and measurement distance. To verify the formula, three different environment temperatures were tested at different distances. The measurement errors were substantially reduced using the empirical model for temperature correction. The results show that this method can effectively improve the accuracy of temperature measurement using the infrared thermal imager. In order to reduce the temperature measurement error with the uncooled infrared thermal imager, experiments were conducted to evaluate the effects of environment temperature and measurement distance on the measurement error of human eye temperature. First, the forehead temperature was used as an intermediate variable to obtain the actual temperature of human eyes. Then, the effects of environment temperature and measurement distance on the temperature measurement were separately analyzed. Finally, an empirical model was established to correlate actual eye temperature with the measured temperature, environment temperature, and measurement distance. To verify the formula, three different environment temperatures were tested at different distances. The measurement errors were substantially reduced using the empirical model for temperature correction. The results show that this method can effectively improve the accuracy of temperature measurement using the infrared thermal imager.
出处 《Journal of Semiconductors》 EI CAS CSCD 2018年第9期55-60,共6页 半导体学报(英文版)
基金 supported by the National Key Research and Development Program of China(No.2016YFD0500903) the National Natural Science Foundation of China(Nos.61501422,61705218)
关键词 semiconductor device uncooled infrared thermal imager environment temperature measurement dis-tance error correction semiconductor device uncooled infrared thermal imager environment temperature measurement dis-tance error correction
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