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Real Time Internet of Things (IoT) Based Water Quality Management System

机译:实时的东西互联网(物联网)的水质管理体系

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The rapidly transforming technologies and changing of people's expectations triggered the fourth industrial revolution, commonly referred to as Industry 4.0. Water is the core resource and a vital for life of all species, as it is a limited resource that needs to be utilized efficiently. Monitoring various aspects of the water quality leads to a clear understanding of the aspects that should be considered for a healthy life and to avoid wastage of water. Using Internet of Things (IoT) should allow for the integration of real time monitoring and controlling of water quality. The suggested system utilizes Internet of Things (IoT) through using sensors to measure the water quality factors such as (pH, temperature and turbidity) for home applications. The system should allow for autonomous decision making for controlling the water quality factors such as (acidity, alkalinity, temperature and amount of total suspended solids expressed by cloudiness or haziness) measured by mentioned sensors within the acceptable limits and keeping records of the historical readings on a cloud based platform. The system will lead to real time data acquisition, transmission and processing of water quality data. This will give the ability to automatically react to the changes in the system outputs. Using Internet of Things (IoT) means the system can be accessed from anywhere through Internet, for example through a mobile application remotely. The objective of the system is to allow the water consumer in home to be able to judge the quality of the incoming water and to control it to the required levels. The system also utilizes the different filters used in home to enhance the water quality in an efficient way. As the filters will only be used once needed and not all the time. Utilizing such, a system should lead to improving the public health and the cost of controlling the quality of the consumed water. The system should eliminate the inconvenient and lengthy offline lab analysis of collected water samples. The system should provide a user-friendly interface with infographics and meters to illustrate the quality factors as Lower-Upper limits and the acceptable values. In addition, the system should provide an easy way for the configuration of the controllers and the communication with the sensors.
机译:快速改造的技术和改变人们的期望引发了第四次工业革命,通常被称为行业4.0。水是核心资源,对所有物种的生命至关重要,因为它是有效利用的有限资源。监测水质的各个方面导致清楚地了解应考虑健康生活的方面,并避免浪费水。使用物联网(物联网)应允许整合实时监测和控制水质。建议的系统通过使用传感器来利用物联网(物联网)来测量家庭应用的水质因素,如(pH,温度和浊度)。该系统应允许自主决策来控制通过所提到的传感器在可接受的限度和历史读数记录中通过提到的传感器测量的(酸度,碱度,温度和浑浊的悬浮固体的总悬浮固体的总悬浮固体的量)的自主决策基于云的平台。该系统将导致水质数据的实时数据采集,传输和处理。这将使能够自动对系统输出的变化作出反应。使用物联网(IoT)表示可以通过Internet从任何地方访问系统,例如通过远程通过移动应用程序访问。该系统的目的是让家里的含水剂能够判断进入水的质量并将其控制到所需的水平。该系统还利用家庭中使用的不同过滤器以有效的方式提高水质。由于过滤器只需要一次使用而不是所有的时间。利用如此,系统应导致提高公共卫生和控制消耗水质量的成本。该系统应消除收集水样的不方便和冗长的实验室分析。该系统应提供具有信息图表和仪表的用户友好的界面,以说明质量因子作为下上限和可接受的值。此外,系统应提供一种简单的方法,用于配置控制器和与传感器的通信。

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