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首页> 外文期刊>Journal of medical systems >An IR Sensor Based Smart System to Approximate Core Body Temperature
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An IR Sensor Based Smart System to Approximate Core Body Temperature

机译:基于IR传感器的智能系统,以近似核心体温

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Herein demonstrated experiment studies two methods, namely convection and body resistance, to approximate human core body temperature. The proposed system is highly energy efficient that consumes only 165 mW power and runs on 5 VDC source. The implemented solution employs an IR thermographic sensor of industry grade along with AT Mega 328 breakout board. Ordinarily, the IR sensor is placed 1.5-30 cm away from human forehead (i.e., non-invasive) and measured the raw data in terms of skin and ambient temperature which is then converted using appropriate approximation formula to find out core body temperature. The raw data is plotted, visualized, and stored instantaneously in a local machine by means of two tools such as Makerplot, and JAVA-JAR. The test is performed when human object is in complete rest and after 10 min of walk. Achieved results are compared with the CoreTemp CM-210 sensor (by Terumo, Japan) which is calculated to be 0.7 degrees F different from the average value of BCT, obtained by the proposed IR sensor system. Upon a slight modification, the presented model can be connected with a remotely placed Internet of Things cloud service, which may be useful to inform and predict the user's core body temperature through a probabilistic view. It is also comprehended that such system can be useful as wearable device to be worn on at the hat attachable way.
机译:这里证明了实验研究了两种方法,即对流和车身阻力,以近似人体核心体温。所提出的系统是高能量的能力,仅消耗165兆瓦的电力并在5个VDC源上运行。该实施的解决方案采用IR IR热成像传感器以及Mega 328突破板。通常,IR传感器距离人额头(即非侵入性)放置1.5-30厘米,并在皮肤和环境温度方面测量原始数据,然后使用适当的近似公式转换以找出核心体温。通过两种工具(如Makerplot)和Java-jar等工具,原始数据绘制,可视化和瞬间存储在本地机器中。当人体物体完全休息时和步行10分钟后,进行测试。将结果与Coretemp CM-210传感器(由Terumo,日本)进行比较,该传感器计算为由所提出的IR传感器系统获得的与BCT的平均值不同的0.7度F.在略微修改时,所呈现的模型可以与云服务的远程放置的内互联网连接,这可能是通过概率视图通知和预测用户的核心体温的有用。还有理解,这种系统可用作可穿戴设备的可穿戴装置,可在帽子可连接的方式上佩戴。

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