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Articles

Monitoring stations in water distribution systems to detect contamination events

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Pages 142-150 | Received 28 Feb 2013, Accepted 27 Aug 2013, Published online: 31 Oct 2013

References

  • Al-Zahrani, M.A., and Moied, K. (2003). “Optimizing water quality monitoring stations using genetic algorithms.” Arab. J. Sci. Eng., 28(1B), 57–75.
  • Aral, M.M., Guan, J., and Maslia, M.L. (2010). “Optimal design of sensor placement in water distribution networks.” J. Water Resour. Plann. Manage., 136(1), 5–18.
  • Berry, J.W., Fleischer, L., Hart, W.E., Phillips, C.A., and Watson, J.P. (2005). “Sensor placement in municipal water networks.” J. Water Resour. Plann. Manage., 131(3), 237–243.
  • Berry, J., Hart, W.E., Phillips, C.A., Uber, J.G., and Watson, J.P. (2006). “Sensor placement in municipal water networks with temporal integer programming models.” J. Water Resour. Plann. Manage., 132(4), 218–224.
  • Chang, N., Prapinpongsanone, N., and Ernest, A. (2012). “Optimal sensor deployment in a large-scale complex drinking water network: Comparisons between a rule-based decision support system and optimization models.” J. Comput. Chem. Eng., 43, 191–199.
  • Chastain Jr., J.R. (2006). “Methodology for locating monitoring stations to detect contamination in potable water distribution systems.” J. Infrastruct. Syst., 12(4), 252–259.
  • Dorini, G., Jonkergouw, P., Kapelan, Z., and Savic, D. (2010). “SLOTS: Effective algorithm for sensor placement in water distribution systems.” J. Water Resour. Plann. Manage., 136(6), 620–628.
  • Hart, W., and Murray, R. (2010). “Review of sensor placement strategies for contamination warning systems in drinking water distribution systems.” J. Water Resour. Plann. Manage., 136(6), 611–619.
  • Kansal, M.L., Dorji, T., Chandniha, S.K., and Tyagi, A. (2012). “Identification of optimal monitoring locations to detect accidental contaminations.” Proc., World Environmental and Water Resources Congress 2012, Crossing boundaries, ASCE, Albuquerque, NM, 758–776.
  • Kessler, A., Ostfeld, A., and Sinai, G. (1998). “Detecting accidental contaminations in municipal water networks.” J. Water Resour. Plann. Manage., 124(4), 192–198.
  • Klise, K.A., Phillips, C.A., and Janke, R.J. (2013). “Two-tiered sensor placement for large water distribution network models.” J. Infrastruct. Syst., in press, doi: 10.1061/(ASCE)IS.1943-555X.0000156.
  • Krause, A., Leskovec, J., Guestrin, C., VanBriesen, J., and Faloutsos, C. (2008). “Efficient sensor placement optimization for securing large water distribution networks.” J. Water Resour. Plann. Manage., 134(6), 516–526.
  • Kumar, A., Kansal, M.L., and Arora, G. (1997). “Identification of monitoring stations in water distribution system.” J. Environ. Eng., 123(8), 746–752.
  • Kumar, A., Kansal, M.L., and Arora, G. (1999). “Discussion of detecting accidental contaminations in municipal water networks.” J. Water Resour. Plann. Manage., 125(5), 308–310.
  • Lee, B., and Deininger, R. (1992). “Optimal locations of monitoring stations in water distribution system.” J. Environ. Eng., 118(1), 4–16.
  • Ostfeld, A., and Salomons, E. (2004). “Optimal layout of early warning detection stations for water distribution systems security.” J. Water Resour. Plann. Manage., 130(5), 377–385.
  • Ostfeld, A., Uber, J., Salomons, A., Berry, J., Hart, W., Phillips, C., Watson, J., Dorini, G., Jonkergouw, P., Kapelan, Z., di Pierro, F., Khu, S., Savic, D., Eliades, D., Polycarpou, M., Ghimire, S., Barkdoll, B., Gueli, R., Huang, J., McBean, E., James, W., Krause, A., Leskovec, J., Isovitsch, S.,Xu, J., Guestrin, C., VanBriesen, J., Small, M., Fischbeck, P., Preis, A., Propato, M., Piller, O., Trachtman, G., Wu, Z., and Walski, T.. (2008). “The battle of the water sensor networks (BWSN): A design challenge for engineers and algorithms.” J. Water Resour. Plann. Manage., 134(6), 556–568.
  • Preis, A., and Ostfeld, A. (2008). “Multi-objective contaminant sensor network design for water distribution systems.” J. Water Resour. Plann. Manage., 134(4), 366–377.
  • Propato, M. (2006). “Contamination warning in water networks: General mixed-integer linear models for sensor location design.” J. Water Resour. Plann. Manage., 132(4), 225–233.
  • Rossman, L.A. (2000). EPANET 2 user’s manual, Water Supply and Water Resources Division, National Risk Management Laboratory, Cincinnati, OH.
  • Shen, H., and McBean, E. (2011). “Pareto optimality for sensor placements in a water distribution system.” J. Water Resour. Plann. Manage., 137(3), 243–248.
  • Watson, J.P., Greenberg, H.J., and Hart, W.E. (2004). “A multiple objective analysis of sensor placement optimization in water networks.” Proc., Water Distribution Systems Analysis Symp., ASCE/EWRI, Reston, VA, 456–465.
  • Weickgenannt, M., Kapelan, Z., Blokker, M., and Savic, D.A. (2010). “Risk-based sensor placement for contaminant detection in water distribution systems.” J. Water Resour. Plann. Manage., 136(6), 629–636.
  • Wu, Z.Y., and Walski, T. (2006). “Multi-objective optimization of sensor placement in water distribution systems.” Proc., 8th Annual Water Distribution Systems Analysis Symp., ASCE, Reston, VA.
  • Xu, J., Fischbeck, P.S., Small, M.J., VanBriesen, J.M., and Casman, E. (2008). “Identifying sets of key nodes for placing sensors in dynamic water distribution networks.” J. Water Resour. Plann. Manage., 134(4), 378–385.

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