Sensor Accuracy Analysis on Incubator Analyzer to Measure Noise and Airflow Parameters

Arrum Sekarwati, Syaifudin Syaifudin, Torib Hamzah, Shubhrojit Misra
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Abstract

Infant incubators are equipment to maintain a stable body temperature for premature babies. Premature babies need room conditioning that is close to conditions in the womb. Room conditioning is carried out in a baby incubator by providing a stable temperature, relative humidity, and measured air flow. This parameter must be controlled so as not to exceed the threshold that will harm the baby. Periodic calibration should be applied to the infant incubator to monitor its function. To ensure the availability of baby incubators according to service standards, it is necessary to conduct test (calibrate) using an incubator analyzer. The purpose of this study is to conduct further research on the incubator analyzer that focuses on discussing the accuracy of noise and airflow sensors with the gold standard. In this study, an experiment was carried out for the sensitivity level of several sensors that had been treated by giving treatment to sensors to choose sensors with good sensitivity to be assembled into one in the incubator analyzer module. The noise sensors (KY-037 and Analog Sound Sensor V2.2) were further compared with the values ​​on the sound level meter and the airflow sensor (D6F-V03A1) was compared with the anemometer. Sensors whose values ​​are close to the comparison values ​​were selected to be integrated into the incubator analyzer module. The incubator analyzer module used Arduino Mega2560 as a data processor and was equipped with an SD Card for the data storage. The built incubator analyzer module was also compared to the Fluke INCU II gold standard for data analysis. The results showed that the Analog Sound Sensor V2.2 had the highest error value (-4.6%) at 32°C and the D6F-V03A1 had the ability to measure sensitivity, where the results were more accurate than INCU II. Based on the error value of the noise sensor, the V2.2 sensor can be applied to measure noise in the baby incubator and the D6F-V03A1 airflow sensor produced an accuracy of up to 3 digits behind the comma which is more accurate than the standard module. The results of the INCU analyzer from this study can be used to calibrate the baby incubator, so that the certainty of the feasibility of the baby incubator is guaranteed. This research can be used as a reference for other researchers who will develop research on incubator analyzers in the future.
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培养箱噪声及气流参数测量分析仪传感器精度分析
婴儿保温箱是为早产儿维持稳定体温的设备。早产儿需要接近子宫条件的室内环境。房间调节是在婴儿保温箱中通过提供稳定的温度、相对湿度和测量气流来进行的。此参数必须加以控制,以免超过对婴儿造成伤害的阈值。应定期对婴儿培养箱进行校准,以监测其功能。为确保婴儿恒温箱符合服务标准,有必要使用恒温箱分析仪进行测试(校准)。本研究的目的是对培养箱分析仪进行进一步的研究,重点讨论用金标准测量噪声和气流传感器的准确性。本研究通过对传感器进行处理,选择灵敏度较好的传感器在培养箱分析仪模块中组装成一个传感器,对处理后的几个传感器的灵敏度水平进行实验。进一步将噪声传感器(key -037和Analog Sound Sensor V2.2)与声级计上的值进行比较,将气流传感器(D6F-V03A1)与风速计上的值进行比较。选择与比较值接近的传感器集成到培养箱分析模块中。培养分析仪模块采用Arduino Mega2560作为数据处理器,并配有SD卡进行数据存储。所建的培养箱分析仪模块还与Fluke INCU II金标准进行了数据分析比较。结果表明,模拟声音传感器V2.2在32°C时误差值最高(-4.6%),D6F-V03A1具有测量灵敏度的能力,其结果比INCU II更准确。根据噪声传感器的误差值,V2.2传感器可用于测量婴儿培养箱中的噪声,D6F-V03A1气流传感器产生的精度高达逗号后面3位数字,比标准模块更准确。本研究的INCU分析仪结果可用于对婴儿培养箱进行标定,从而保证了婴儿培养箱可行性的确定性。本研究可为今后开展培养分析仪研究的其他研究者提供参考。
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