Sungai Pusu River Emergency Vital Signs Monitoring Using LoRaWAN

Nur Sakinah Kosnin, Shihabeldin Fadli Yousif Hasan, M. H. Habaebi, Mod Rafiqul Islam
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Abstract

Sungai Pusu is the river that passes through the IIUM Gombak campus. The river has been having a cloudy appearance for years hence it is needed to quantify the vital signs such as pH, temperature, and turbidity because these are the vital signs indicating the health of a river. Currently, there a lot of monitoring systems however the available monitoring systems do not support long-range communication and consume a lot of power. The data need to be transmitted at a long-range as it is being monitored remotely at a long distance. Therefore, a river pollution monitoring system must be developed to track the emergency vital signs (EVSs) of the river water The EVs include pH, temperature as well as turbidity. This project capitalizes on the long-range communication and low power consumption LoRaWAN system. The prototype monitoring station design can read the important EVSs of the river such as temperature, pH level, and turbidity. The sensors are connected to a microcontroller board. The readings of the EVSs are transmitted by the LoRa gateway which is forwarding the data to The Things Network Server. A graphical representation of the data is displayed on Ubidots. The results attained quantify the contribution of the IIUM populace to Sungai Pusu Pollution and raise awareness. It is also important to discuss the possibilities to the pollution of the river to see how one’s action could contribute to it. A statistical data of the results is as important so that an overall result can be deduced. Based on the results, the pH is decreased 1.32 pH, the temperature is increased by 2.29°C, and turbidity is decreased by 0.44 NTU throughout the monitoring period. In the future, six more monitoring stations will be added to accommodate KL River of Life (RoL) EVSs too.
基于LoRaWAN的双溪浦浦河紧急生命体征监测
双溪浦水是流经IIUM贡巴克校区的河流。这条河多年来一直是浑浊的,因此有必要量化酸碱度、温度和浑浊度等重要指标,因为这些是表明河流健康的重要指标。目前有很多监控系统,但现有的监控系统不支持远程通信,且功耗大。数据需要远距离传输,因为它是在远距离远程监控。因此,必须建立河流污染监测系统,跟踪河流水质的紧急生命体征(EVs),包括pH值、温度和浊度。该项目利用远程通信和低功耗的LoRaWAN系统。原型监测站设计可以读取河流的重要evs,如温度,pH值,浊度。传感器连接到微控制器板上。evs的读数由LoRa网关传输,LoRa网关将数据转发给物联网服务器。数据的图形化表示将显示在Ubidots上。所获得的结果量化了IIUM民众对Sungai Pusu污染的贡献,并提高了人们的认识。同样重要的是,讨论污染河流的可能性,看看一个人的行为会如何造成污染。结果的统计数据同样重要,因此可以推断出总体结果。结果表明,在整个监测期间,pH值降低了1.32 pH,温度升高了2.29℃,浊度降低了0.44 NTU。未来,将增加6个监测站,以监测九龙生命之河(RoL) ev。
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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