基于物联网的雨水水质管理系统

Kunal Shetye, Shruti Gupta, K. Naidu, Siddhant Keskar, Priti Shahane, H. R.
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引用次数: 0

摘要

世界上的许多元素及其气候区域单元都容易受到雨水和雨水质量持续下降的影响,这些雨水和雨水可以日常使用,而不是被浪费,现在许多当局和智慧城市开发商正在计划建立一个持续的水质管理系统,对从雨水和风暴中收集的水进行持续监测,以便对所有建筑物上方水箱中捕获的水的质量和可用性进行持续监测。除了雨水径流的一个方面,它可能含有其他水平的污染物,如石油、石化产品、铅、汞、磷酸盐和硝酸盐。其他水平的污染物也存在,它们广泛地决定了水的可饮用性和可用性,它们是总溶解固体、总悬浮固体、电导率、溶解氧、浊度、pH值、BOD、COD等。为此,在构建监控系统时,将传感器与物联网(IoT)设备结合使用是最有效、最准确、最可行的。连续监控并在LCD屏幕和Think speak的云服务器上显示计算数据,允许多个用户在任何需要的时间远程访问数据。使用模拟传感器和一些参数的累积公式,我们计算并获得所有传感器的校准和准确值,物联网在这里起着非常重要的作用,并且比其他传统或化学方法具有优势,因为它提供了比任何其他方法更好的响应时间和灵活性。使用物联网设备也为系统升级提供了巨大的空间,以适应更复杂的情况和快速变化的场景需求
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 Stormwater Quality Management System
Many elements of the world and their climate area unit susceptible to continuous degrading the quality of stormwater and rainwater that can be of daily use instead of it being wasted, now many authorities and smart city developers are planning to set up a continuous water quality management system on the water collected from rains and storms, to have a continuous monitor over the quality and useability of the water caught in the tanks overhead of all buildings. Other than one facet of stormwater runoff, that might contain other level of pollutants likes oils, petrochemicals, lead, mercury, phosphates and nitrates. Other level of pollutants are also present which widely determine the drinkability and useability of the water, which are total dissolved solids, total suspended solids, conductivity, dissolved oxygen, turbidity, pH, BOD, COD, etc. For which the use of sensors with Internet of Things (IoT) devices are most efficient, accurate, feasible when building a monitoring system. Continuous monitoring and displaying the calculated data on an LCD screen and on a cloud server of Think speak that allows authorization to multiple users to access the data remotely and at any desired time. Using analog sensors and cumulative formulas from some parameters we calculate and get calibrated and accurate values from all sensors IoT here plays a very essential role and gives an upper edge than other traditional or chemical methods, as it provides much better response time and flexibility than any of the other methods. Using IoT devices also gives a huge scope in upgrading the system for further complex situation and demands with fast changing scenarios
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