系统基础数据、基础参数、基础物联网(IoT)平台、基础物联网(IoT)平台

Benedika Ferdian Hutabarat, Mardian Peslinof, M. F. Afrianto, Yoza Fendriani
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引用次数: 0

摘要

本研究旨在利用Thingspeak平台开发基于物联网(IoT)的水参数监测数据库系统。该系统旨在监测实时水参数,如温度、水pH值和水浊度。用于监测这些水参数的传感器安装在连接到互联网的树莓派微处理器上。由传感器生成并由树莓派处理的数据随后被发送到Thingspeak服务器。本研究开发的数据库系统利用了Thingspeak平台提供的数据处理、可视化、与其他软件集成等功能。存储在数据库中的数据可以通过Thingspeak提供的仪表板在线访问。测试结果表明,基于Thingspeak平台的物联网水参数监测数据库系统能够正常运行,并提供准确的监测水情信息。安装在水面上的传感器成功地每隔10秒定期向Thingspeak平台发送数据。试验结果表明,温度参数的精度偏差值为0.9996,其中温度的精度值在96.30% ~ 100%之间变化。温度测量的平均精度为98.74%,平均系统误差为1.26%。系统精度测试结果范围为0.95 ~ 0.99。测试是在实验室规模上进行的,在未来,该系统可以开发用于长时间的实时水参数监测
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SISTEM BASIS DATA PEMANTAUAN PARAMETER AIR BERBASIS INTERNET OF THINGS (IoT) DENGAN PLATFORM THINGSPEAK
] This research aims to develop an Internet of Things (IoT)-based water parameter monitoring database system using the Thingspeak platform. This system is designed to monitor real-time water parameters such as temperature, water pH, and water turbidity. Sensors for monitoring these water parameters are installed on a Raspberry Pi microprocessor connected to the internet network. The data generated by the sensors and processed by the Raspberry Pi are then sent to the Thingspeak server. The database system developed in this research utilizes the features provided by the Thingspeak platform, such as data processing, visualization, and integration with other software. The data stored in the database can be accessed online through the dashboard provided by Thingspeak. The test results show that the IoT-based water parameter monitoring database system with the Thingspeak platform can function properly and provide accurate information on the monitored water conditions. The sensors installed on the water successfully sent data periodically to the Thingspeak platform every 10 seconds. The test results showed a deviation value of 0.9996 for the accuracy of the temperature parameter, where the accuracy value of the temperature varied from 96.30% to 100%. The average accuracy of the temperature measurement was 98.74%, and the average system error was 1.26%. The system accuracy test results range from 0.95 to 0.99. The testing was conducted on a laboratory scale, and in the future, this system can be developed for real-time water parameter monitoring over a longer period of time
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