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首页> 外文期刊>International Journal of Thermophysics >Comparison Measurements of Infrared Ear Thermometers Against Three Types of Blackbody Sources
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Comparison Measurements of Infrared Ear Thermometers Against Three Types of Blackbody Sources

机译:红外耳温计与三种黑体源的比较测量

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Body temperature is a basic vital sign of the human body, and the use of infrared ear thermometers for medical diagnosis and health management on human bodies has been widespread nowadays. To gain credibility and confidence in the usage of IR ear thermometers, a standard blackbody source (BBS) with a calibration traceable to ITS-90 is necessitated. Three types of cavity-shaped blackbodies (designated BBC-A, BBC-E, and BBC-J) vertically immersed in a temperature-controlled stirred water bath were developed at the Center for Measurement Standards (CMS) as standard BBSs to calibrate and verify 14 commercial IR ear thermometers produced by six manufacturers. The basic structure of each cavity was designed based on the informative examples recommended in ASTM E- 1965, EN 12470-5, and JIS T 4207 standards. The temperature of the blackbody cavity shall be represented by the water temperature near the bottom of the cavity that is measured using an immersed platinum resistance thermometer (PRT) for which the calibration is traceable to our national standard and with an uncertainty no greater than 0.03℃ (k = 2). The water bath was evaluated using the PRT to be stable within ±3.5 mK over 1 h and uniform within ±1.1 mK. Three types of BBSs were compared and analyzed utilizing two IR ear thermometers of 0.01℃ resolution as well as the statistical technique of analysis of variance (ANOVA). On the contrary, IR ear thermometers were tested and verified against three BBSs at three blackbody temperatures of 35.5℃, 37℃, and 41℃. The analysis results of ANOVA showed that there is no significant temperature difference among three different structured blackbodies, and the average measured radiance temperature of three BBSs at 35.5℃, 37℃, and 41℃ were within 0.026℃, 0.024℃, and 0.027℃ of each other. Three among fourteen IR ear thermometers tested were outside of the 0.2℃ MPE (maximum permissible error) recommended by ASTM E-1965, EN 12470-5, or JIS T 4207 standards while BBC-A and BBC-E were used; however, four were outside of MPE requirement when BBC-J was used.
机译:体温是人体的基本生命体征,如今,红外耳温计在人体的医学诊断和健康管理中的使用已广泛普及。为了获得使用红外耳温计的信誉和信心,必须使用可追溯至ITS-90的标准黑体源(BBS)。在测量标准中心(CMS)上开发了垂直浸入温度可控的搅拌水浴中的三种类型的腔状黑体(分别为BBC-A,BBC-E和BBC-J)作为标准BBS进行校准和验证六个制造商生产了14个商业红外耳温计。每个空腔的基本结构都是根据ASTM E-1965,EN 12470-5和JIS T 4207标准中推荐的信息性示例设计的。黑体腔的温度应由腔底部附近的水温来表示,该温度使用浸入式铂电阻温度计(PRT)进行测量,其校准可追溯到我们的国家标准,并且不确定度不超过0.03℃ (k = 2)。使用PRT评估水浴在1小时内稳定在±3.5 mK之内,并在±1.1 mK之内保持均匀。使用两个分辨率为0.01℃的红外耳温计以及方差分析的统计技术(ANOVA)对三种类型的BBS进行了比较和分析。相反,在三个黑体温度分别为35.5℃,37℃和41℃的情况下,针对三个BBS对IR耳温进行了测试和验证。方差分析的结果表明,三种不同结构的黑体之间没有明显的温度差异,三种BBS在35.5℃,37℃和41℃的平均测得辐射温度在0.026℃,0.024℃和0.027℃之间。彼此。在14个IR耳温计中,有3个在ASTM E-1965,EN 12470-5或JIS T 4207标准所推荐的0.2℃MPE(最大允许误差)范围之外,而使用BBC-A和BBC-E;但是,当使用BBC-J时,有四个超出MPE要求。

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