基于物联网的NodeMCU清洁用水数据采集

Erwin Sitompul, Sandi M. Samsudin
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引用次数: 1

摘要

清洁的水是家庭和工业的主要必需品。作为一种有价值的商品,水的使用量需要精确测量,以便进一步分析消费者的行为。在本文中,作者提出了一种方案,该方案能够通过云数据存储和自行开发的智能手机应用程序支持清洁水使用的数字数据采集。为了测量用水量,使用了标准化的Itron Multimag TM II水表。TCRT5000红外反射传感器用于检测水表指示器旋转金属板的反射。建立了一个实验室规模的水循环装置来模拟水流。水泵是用来形成闭路水循环的。然后安装水表来测量通过循环的水量。在整个实验过程中,设置水表测量不同泵速下的用水量,测试红外反射传感器检测不同频率下旋转的金属板。如表所示,总共有3410升水流经水表。红外反射传感器能够以100%的精度检测板,并提供与水表相同的用水量。检测计数的数据由NodeMCU ESP8266通过internet发送到Firebase数据存储,保存并进一步处理。开发的Android应用程序读取测量的用水量数据并有效地显示它。用户可以在不同的时间间隔,如每天,每月或每年监测用水量。这可以用来对消费行为进行适当的调整,并进一步采取节约措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IoT-based Data Acquisition of Clean Water Usage Using NodeMCU
Clean water is a major necessity for households and industries. As a valuable commodity, the usage of water needs to be measured accurately so that further analysis of consumer behavior can be done. In this paper, the authors propose a scheme that enables the digital data acquisition of clean water usage, supported by the cloud data storage and a self-developed smartphone application. For the purpose of water usage measurement, a standardized Itron Multimag TM II water meter is used. A TCRT5000 infrared reflective sensor is used to detect the reflection of a rotating metal plate of the water meter’s indicator. A laboratory-scale water cycle installation is constructed to simulate the water flow. A water pump is used to create the closed-circuit water circulation. The water meter is then mounted to measure the water volume that passes through the circulation. Throughout the experiment, the water meter is set to measure water usage quantity in different pump speeds while the infrared reflective sensor is tested to detect the rotating metal plate at various frequencies. Altogether, 3,410 liters of water is flown through the water meter, as it indicates. The infrared reflective sensor is able to detect the plate with 100 % accuracy and delivers the identical water usage quantity as the water meter. The data of the detection counts are sent by the NodeMCU ESP8266 through the internet to the Firebase data storage, where it is saved and further processed. The developed Android application reads the measured water usage data and shows it effectively. The user can monitor the quantity of water usage in various time intervals such as daily, monthly, or yearly. This can be used to perform an appropriate adjustment to the consumption behavior and further saving measures.
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