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Prediction of Water Quality Index in Drinking Water Distribution System Using Activation Functions Based Ann

机译:基于ANG的激活功能预测饮用水分配系统水质指数

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Determination of the drastic changes in water quality is an urgent need in this polluted era and is more essential for the survival of the existing and growing water demand. It has been very difficult to analyze the water quality data. This study focused on the Water Quality Index (WQI) prediction of water samples collected from 1944 different wells surrounding the Vellore district. WQI prediction is carried out by ANN (i.e.) Artificial Neural Networks implementation which has used 15 groundwater variables that are collected in different parts of the Vellore district from 2008 to 2017. If 15 underground variable values meet the desired range then WQI is considered as better and appropriate for drinking. But if any one of the value doesn't meet the desired range then it is not considered as better and hence not suitable for drinking. In this study the pre-processing of the collected data has been completed to reduce the computational time. Further feature extraction techniques are used to extract the required features. The extracted features are passed on to ANN classifiers that possess three activation functions like Tanh, Maxout, and rectifier. The novelty of this paper is that WQI is determined by combining the three activation functions like Tanh, Maxout, and rectifier. A comparative analysis has been performed for proposed work related with various methodologies.
机译:在这种污染的时期,水质变化的确定是迫切需要,对现有的水需求的生存更为重要。分析水质数据一直很困难。本研究重点研究了从1944年围绕了Vellore区的不同井收集的水样的水质指数(WQI)预测。 WQI预测由ANN(IE)人工神经网络实现执行,其使用了从2008年至2017年在Vellore区的不同部分收集的15个地下水变量。如果15个地下变量值符合所需范围,那么WQI被认为更好并适合饮酒。但如果任何一个值不符合所需范围,那么它不被视为更好,因此不适合饮用。在本研究中,已经完成了收集数据的预处理以减少计算时间。进一步的特征提取技术用于提取所需的特征。将提取的特征传递给ANN分类器,其具有三个激活功能,如Tanh,Maxout和整流器。本文的新颖性是通过组合Tanh,Maxout和整流器等三个激活功能来确定WQI。已经对与各种方法相关的拟议工作进行了比较分析。

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