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Categorisation of Urban Water Consumptions

8 pagesPublished: September 20, 2018

Abstract

Achieving an optimised management of water supply infrastructures is a very important and challenging task, namely in urban environments. The identification and prediction of actual water consumption patterns can be exploited to improve the overall performance of water supply infrastructures. This work considers the application of pattern recognition techniques on water consumption time-series to quantify the time distribution of common consumption behaviours in urban environments. Three groups representing typical consumption patterns have been considered: one characterised by residual consumptions, which occur during the summer months of June and July, while the remaining two consist of significant consumption during the day, with differences taking place during night periods – the first group, more prevalent during warmer months, is represented by higher consumptions during the night, when compared with the second group, more representative of colder months, but showing also some expression all year round. Results also demonstrate that an automatic categorisation of urban water consumptions can be carried out along with the identification of specific time periods in which each pattern occurs.

Keyphrases: pattern recognition, time series clustering, Water consumption patterns, water management

In: Goffredo La Loggia, Gabriele Freni, Valeria Puleo and Mauro De Marchis (editors). HIC 2018. 13th International Conference on Hydroinformatics, vol 3, pages 1123--1130

Links:
BibTeX entry
@inproceedings{HIC2018:Categorisation_of_Urban_Water,
  author    = {Joaquim Leit\textbackslash{}\~{}\{a\}o and Nuno Sim\textbackslash{}\~{}\{o\}es and Jos\textbackslash{}'e Alfeu Marques and Paulo Gil and Bernardete Ribeiro and Alberto Cardoso},
  title     = {Categorisation of Urban Water Consumptions},
  booktitle = {HIC 2018. 13th International Conference on Hydroinformatics},
  editor    = {Goffredo La Loggia and Gabriele Freni and Valeria Puleo and Mauro De Marchis},
  series    = {EPiC Series in Engineering},
  volume    = {3},
  pages     = {1123--1130},
  year      = {2018},
  publisher = {EasyChair},
  bibsource = {EasyChair, https://easychair.org},
  issn      = {2516-2330},
  url       = {https://easychair.org/publications/paper/CRF3},
  doi       = {10.29007/2mtq}}
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