Environmental monitoring system in incubators for newborns

C. S. Bosoc, G. Suciu, A. Dragulinescu
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引用次数: 1

Abstract

This article describes the design of a system that implements the temperature and humidity monitoring function of the incubators for newborns. The design circuit will contain a resistive temperature sensor connected in a bridge configuration and a capacitive humidity sensor. For the data to be read by the microcontroller, a signal conditioning block will be designed to amplify the outputs of the two sensors and bring them into the input range of the analog-to-digital converter. USB heating elements will be used to adjust the temperature. An 8-bit ATMEL family microcontroller will be used and the program will be developed using the Code Vision AVR compiler. In order to validate the data, a comparison will be made between the monitoring system described above and a LIBELIUM Smart Environment plate containing calibrated sensors that provide very good temperature and humidity values based on a set sampling frequency. The development environment for the LIBELIUM is ARDUINO, which will send the data over the Wi-Fi network using the MQTT protocol to a SQL database with a Grafana web interface for viewing. In order to alert medical staff to exceeding the range of temperature or humidity values, I will also implement a code to send email alerts from the Grafana web interface that communicates with LIBELIUM Smart Environment.
新生儿保育箱环境监测系统
本文介绍了一种实现新生儿恒温箱温湿度监测功能的系统设计。设计电路将包含一个电阻式温度传感器和一个电容式湿度传感器。对于要由微控制器读取的数据,将设计一个信号调理块来放大两个传感器的输出,并将它们带入模数转换器的输入范围。USB加热元件将用于调节温度。将使用8位ATMEL家族微控制器,并使用Code Vision AVR编译器开发程序。为了验证数据,将对上述监测系统与LIBELIUM Smart Environment平板进行比较,该平板包含经过校准的传感器,可根据设定的采样频率提供非常好的温度和湿度值。LIBELIUM的开发环境是ARDUINO,它将使用MQTT协议通过Wi-Fi网络将数据发送到带有Grafana web界面的SQL数据库以供查看。为了提醒医务人员超过温度或湿度值的范围,我还将实现一个代码,从与LIBELIUM智能环境通信的Grafana web界面发送电子邮件警报。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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