System to Improve the Quality of Water Resources in Sri Lanka Using Machine Learning and Image Processing

M.H. Samindi Liyanage, G.M.B. Gajanayake S, Oshini Wijewickrama, S.D.S. Fernando A, D. Wijendra, A. I. Gamage
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Abstract

Water covers approximately 71% of the earth’s surface, but only 1.2% of it can be used for drinking. However, due to the amount of waste water released into water resources, the presence of harmful microorganisms, and natural occurrences such as eutrophication, even that water cannot be used directly for drinking purposes without purification. One method of purifying water is chlorination. However, if the chlorine level exceeds the standard, it can cause both long-term and short-term illnesses. As a result, a system is imposed to solve four problems: predicting the pH value of chlorinated drinking water, determining the quantification value of active sludge in a wastewater plant, detecting microorganisms in drinking water, and predicting the percentage of eutrophication in a water resource.
利用机器学习和图像处理改善斯里兰卡水资源质量的系统
水覆盖了大约71%的地球表面,但只有1.2%的水可以用于饮用。然而,由于排放到水资源中的废水的数量,有害微生物的存在,以及富营养化等自然现象,即使是这些水也不能在未经净化的情况下直接用于饮用。净水的一种方法是加氯。然而,如果氯含量超过标准,就会导致长期和短期的疾病。因此,一个系统被用来解决四个问题:预测氯化饮用水的pH值,确定污水厂活性污泥的量化值,检测饮用水中的微生物,以及预测水资源中富营养化的百分比。
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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