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Verification Device for Temperature and Relative Humidity Inside the Infant Incubator via IoT

机译:通过物理信息仪在婴儿孵化器内的温度和相对湿度的验证装置

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This research aims to design a prototype for verification of the temperature and relative humidity inside the infant incubator and to improve the accuracy of the sensor, as well as allowing the prototype to monitor temperature and relative humidity via IoT for teaching in medical instrumentation calibration topic. The designed device composed of 3 main parts: 1) Input consists of 5 DS18B20 temperature sensors and 1 DHT22 humidity sensor, 2) The processor part used NodeMCU (ESP8266) board which programming with Arduino IDE and 3) The display was divided into two parts: IoT and data logger to save data into external memory before published data to thingspeak.com. The designed device was set in the water bath together with OM-CP Data Logger tested on 5 to 40° C to find temperature error for each sensor at each temperature value. The prototype was reprogrammed with compensation the error equations of each sensor in the program and then retest with the infant incubator temperature 32- 40°C. The result found that the error values were highly decreased. Performance testing of the designed device in the infant incubator was compared to the Incubator Analyzer Brand Fluke Biomedical INCU II based on IEC 60601-2-19 test on 32° C and 36° C. The pattern of the temperature changes inside infant incubator of the prototype device compared with the standard device was closely same for both temperatures. The average temperatures and relative humidity measured from the prototype device on Steady Temperature Condition (STC) were had approximate acceptable values compared to mean values obtained from the standard instrument. All temperatures reading from the prototype were different from the standard device temperature less than 0.5°C, and the relative humidity reading from the prototype was different from relative humidity reading from the standard device of less than 5 %.
机译:本研究旨在设计一种原型,用于验证婴儿培养箱内的温度和相对湿度,提高传感器的精度,以及允许原型通过物有所监测温度和相对湿度的医疗仪表校准主题。由3个主要部分组成的设计器件:1)输入由5个DS18B20温度传感器和1 DHT22湿度传感器组成,2)处理器部分使用的NodeMCU(ESP8266)板,其中使用Arduino IDE编程和3)显示器分为两部分:IOT和数据记录器在发布数据之前将数据保存到外部内存到orkingpeak.com。在水浴中与OM-CP数据记录器一起设置设计的装置,在5至40°C上测试,为每个温度值找到每个传感器的温度误差。用程序中的每个传感器的误差方程重新编程原型,然后用婴儿培养箱温度32-40°C重新测试。结果发现,误差值高度降低。将设计装置在婴儿培养箱中的性能测试与基于IEC 60601-2-19在32°C和36℃的IEC 60601-2-19测试的培养箱分析仪品牌Fluke Biomedical Inc.进行了比较。温度变化的图案在婴儿培养箱内与标准装置相比的原型装置对两个温度都很紧密。与从标准仪器中获得的平均值相比,从原型装置上测量的平均温度和相对湿度与稳定温度条件(STC)的相比具有近似可接受的值。从原型读取的所有温度都不同于0.5°C的标准装置温度,并且从原型的相对湿度读取与来自标准装置的相对湿度读数不同的标准装置小于5%。

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