DocumentCode
3168097
Title
Fuzzy index for Public Supply Water Quality
Author
Roveda, J.A.F. ; Arashiro, L.T. ; Roveda, S.R.M.M. ; Silverio, J.M.
Author_Institution
Dept. of Environ. Eng., Univ. Estadual Paulista, Sorocaba, Brazil
fYear
2013
fDate
24-28 June 2013
Firstpage
1155
Lastpage
1159
Abstract
Human population growth and increased industrial activity in recent decades have contributed to a range of environmental problems, including the contamination of groundwater and surface water. In order to help in the management of these resources, water quality indices are used as tools to summarize multiple parameters and express them in the form of a single number. The ability to provide both an integrated assessment of changes in environmental variables, as well as performance tracking, has resulted in such indices being increasingly employed in surface water monitoring programs. The aim of this study was to develop an Index for Public Supply Water Quality (IPS) using a fuzzy inference methodology. Linguistic systems generally provide satisfactory tools for qualitative purposes, enabling the inclusion of descriptive variables with reduced loss of individual information. Validation of the technique was achieved by analysis of measurement data obtained for the Sorocaba River, provided by CETESB. The new procedure proved more rigorous, compared to classical IPS. It could be readily applied in the evaluation of other water bodies, or be adjusted to incorporate additional parameters also considered important for the assessment of water quality.
Keywords
computational linguistics; contamination; fuzzy set theory; fuzzy systems; groundwater; inference mechanisms; water quality; water supply; IPS; environmental problems; fuzzy index; fuzzy inference methodology; groundwater contamination; human population growth; industrial activity; linguistic systems; public supply water quality indices; surface water contamination; surface water monitoring programs; water quality assessment; Biological system modeling; Fuzzy logic; Indexes; Monitoring; Object oriented modeling; Rivers; Water resources;
fLanguage
English
Publisher
ieee
Conference_Titel
IFSA World Congress and NAFIPS Annual Meeting (IFSA/NAFIPS), 2013 Joint
Conference_Location
Edmonton, AB
Type
conf
DOI
10.1109/IFSA-NAFIPS.2013.6608563
Filename
6608563
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