基于lorawan的管道泄漏检测物联网系统

Olaide Agbolade, Oyindamola Olanrewaju, Samson Oyetunji, Josiah Babatola
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引用次数: 2

摘要

由于潜在的经济和环境危害,管道泄漏是一个重要的问题。在这项研究中,我们提出了一种基于lorawan的方法来检测和定位管道中的泄漏。我们的研究包括一个实验装置,模拟附有压力和流量传感器的管道网络。流速和压力数据通过LoRaWAN传输到接收器,接收器再通过蜂窝网络将数据上传到云服务器。接收端比较连接到管网的所有监测节点的流量读数。如果连续节点的流量读数呈现超过1.5%的百分比变化,则确认发生泄漏。流速读数也可用于定位泄漏。泄漏检测的分辨率取决于管网中监控节点的数量。在我们的研究中,发现压力读数不足以提供可靠的泄漏证据。在我们的具体情况下,由于实验管网长度较短,连续节点之间的压降高达38.2%,总压力损失为62%,使得压力数据不适合短管网中的泄漏检测。
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A LoRaWAN-based IoT System for Leakage Detection in Pipelines
Leakages in a pipeline are an important problem due to the potential economic and environmental hazard they present. In this study, we proposed a LoRaWAN-based approach for detecting and localizing leakages in pipelines. Our study includes an experimental setup that simulates a pipeline network with pressure and flow rate sensors attached. The flow rate and pressure data were transmitted through LoRaWAN to a receiver, which in turn uploads the data to a cloud server using a cellular network. The receiver compares the flow rate reading from all the monitoring nodes attached to the pipeline network. If flow rate reading from successive nodes presents a percentage variation of more than 1.5%, a leak is confirmed to have taken place. The flow rate readings can also be used to localize the leak. The resolution of the leak detection is dependent on the number of monitoring nodes on the pipeline network. In our study, the pressure readings were found to be insufficient to provide reliable evidence of leakages. In our specific situation, due to the relatively short length of the experimental pipeline network, a pressure drop of up to 38.2% was recorded between successive nodes with an overall pressure loss of 62%, making pressure data unsuitable for leak detection in the short pipeline network.
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