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jpaper.bib
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%TODO
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url = "http://www.sciencedirect.com/science/article/pii/S1877705814022905",
author = "S. Rathi and R. Gupta",
keywords = "Critical Review ;Sensor location",
keywords = "Sensor Placement",
keywords = "Water Security",
keywords = "Water Distribution Networks"
}
@article{Kessler1998,
author = {Avner Kessler and Avi Ostfeld and Gideon Sinai},
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@article{Kessler,
author = {Kessler, A. and Ostfeld, A. and Sinai, G.},
title = {Detecting Accidental Contaminations in Municipal Water Networks},
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volume = {124},
number = {4},
pages = {192-198},
year = {1998},
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author = {Lee, B. and Deininger, R.},
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author = {Kumar, A. and Kansal, M. and Arora, G.},
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year = {1997},
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@book{Cormen:2001:IA:580470,
author = {Cormen, Thomas H. and Stein, Clifford and Rivest, Ronald L. and Leiserson, Charles E.},
title = {Introduction to Algorithms},
year = {2001},
isbn = {0070131511},
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@article{BWSN,
author = {Ostfeld, A. and Uber, J. and Salomons, E. and Berry, J. and Hart, W. and Phillips, C. and Watson, J. and Dorini, G. and Jonkergouw, P. and Kapelan, Z. and di Pierro, F. and Khu, S. and Savic, D. and Eliades, D. and Polycarpou, M. and Ghimire, S. and Barkdoll, B. and Gueli, R. and Huang, J. and McBean, E. and James, W. and Krause, A. and Leskovec, J. and Isovitsch, S. and Xu, J. and Guestrin, C. and VanBriesen, J. and Small, M. and Fischbeck, P. and Preis, A. and Propato, M. and Piller, O. and Trachtman, G. and Wu, Z. and Walski, T.},
title = {The Battle of the Water Sensor Networks (BWSN): A Design Challenge for Engineers and Algorithms},
journal = {Journal of Water Resources Planning and Management},
volume = {134},
number = {6},
pages = {556-568},
year = {2008},
}
@book{PerBk,
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publisher = {McGraw-Hill},
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@article{Schwartz2014271,
author = {Rafi Schwartz and Ori Lahav and Avi Ostfeld},
title = {Integrated hydraulic and organophosphate pesticide injection simulations for enhancing event detection in water distribution systems },
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number = "",
pages = {271-284},
year = {2014},
}
@article{Mohankumar,
author = {Kumar, S. and Narasimhan, S. and Bhallamudi, S.},
title = {State Estimation in Water Distribution Networks Using Graph-Theoretic Reduction Strategy},
journal = {Journal of Water Resources Planning and Management},
volume = {134},
number = {5},
pages = {395-403},
year = {2008},
}
@book{Deo,
title = "Graph theory with applications to engineering and computer science",
author = "Deo, Narsingh",
series = "Prentice-Hall series in automatic computation",
publisher = "Englewood Cliffs, N.J. Prentice-Hall",
year = {1974},
}
@book{ Rossman,
title = "EPANET 2 user's manual",
author = "Rossman, L. A",
publisher = "U. S. Environmental protective Agency, Cincinnati.",
year = {2000},
}
@article{Dinardo,
issn={0920-4741},
journal={Water Resources Management},
volume={27},
number={6},
doi={10.1007/s11269-012-0133-y},
title={Water Network Protection from Intentional Contamination by Sectorization},
publisher={Springer Netherlands},
keywords={Water network protection; District metering; Water contamination; Malicious attack; Sectorization},
author={Di Nardo, Armando and Di Natale, Michele and Guida, Mario and Musmarra, Dino},
pages={1837-1850},
year={2013},
language={English},
}
@article{Poulin2008-heuristic,
author = {Poulin, A. and Mailhot, A. and Grondin, P. and Delorme, L. and Periche, N., and Villeneuve, J. },
title = {Heuristic Approach for Operational Response to Drinking Water Contamination},
journal = {Journal of Water Resources Planning and Management},
volume = {134},
number = {5},
pages = {457-465},
year = {2008},
}
@article{Baranowski2008-Consequence,
title = {Consequence Management Utilizing Optimization},
author={Baranowski, T. and LeBoeuf, E.},
journal = {Journal of Water Resources Planning and Management},
volume = {134},
number = {4},
pages = {386-394},
year = {2008},
}
@article{Poulin-2010,
title = {Planning Unidirectional Flushing Operations as a Response to Drinking Water Distribution System Contamination},
author={Poulin, A. and Mailhot, A. and Periche, N. and Delorme, L., and Villeneuve, J.},
journal = {Journal of Water Resources Planning and Management},
volume = {136},
number = {6},
pages = {647-657},
year = {2010},
}
@article {Preis2008-Multiobjective,
author = {Preis, A. and Ostfeld, A.},
title = {Multiobjective contaminant response modeling for water distribution systems security},
journal = {Journal of Hydroinformatics},
volume = {10},
number = {4},
pages = {267--274},
year = {2008},
}
@article{Guidorzi2009-Amultiobjective,
title = {A multi-objective approach for detecting and responding to accidental and intentional contamination events in water distribution systems.},
author={ Guidorzi, M. and Franchini, M. and Alvisi, S.},
journal = {Urban water journal},
volume = {6},
number = {2},
pages = {115-135},
year = {2009},
}
@article{ Alfonso2010-MultiobjectiveOptimization,
title = {Multiobjective Optimization of Operational Responses for Contaminant Flushing in Water Distribution Networks},
author={ Alfonso, L. and Jonoski, A. and Solomatine, D.},
journal = {Journal of Water Resources Planning and Management},
volume = {136},
number = {1},
pages = {48-58},
year = {2010},
}
@article{Shafiee2015,
title = {Real-Time Guidance for Hydrant Flushing Using Sensor-Hydrant Decision Trees},
author={ Shafiee, M. and Berglund, E.},
journal = {Journal of Water Resources Planning and Management},
volume = {141},
number = {6},
pages = {04014079},
year = {2015},
}
@article {Alvisi345-Nearoptimal,
author = {Alvisi, S. and Franchini, M. and Gavanelli, M. and Nonato, M.},
title = {Near-optimal scheduling of device activation in water distribution systems to reduce the impact of a contamination event},
journal = {Journal of Hydroinformatics},
volume = {14},
number = {2},
pages = {345--365},
year = {2012},
}
@article {Zechman798,
author = {Zechman, Emily M.},
title = {Integrating evolution strategies and genetic algorithms with agent-based modeling for flushing a contaminated water distribution system},
journal = {Journal of Hydroinformatics},
volume = {15},
number = {3},
pages = {798--812},
year = {2013},
}
@techreport{USEPA-response,
title={Response protocol toolbox: Planning for and responding to drinking water contamination threats and incidencts-Module 5:Public health response guide},
author={USEPA},
year={2004},
institution={Report EPA 817-03-005 interim Final-April 2004, Washington, D.C.},
}
@article{OStfeld,
author = {Ostfeld, A. and Salomons, E.},
title = {Optimal Layout of Early Warning Detection Stations for Water Distribution Systems Security},
journal = {Journal of Water Resources Planning and Management},
volume = {130},
number = {5},
pages = {377-385},
year = {2004},
}
@article{BERRY_FLEISCHER,
author = {Berry, J. and Fleischer, L. and Hart, W. and Phillips, C. and Watson, J.},
title = {Sensor Placement in Municipal Water Networks},
journal = {Journal of Water Resources Planning and Management},
volume = {131},
number = {3},
pages = {237-243},
year = {2005},
}
@Article{propato,
author = {Propato, M.},
title = {Contamination Warning in Water Networks: General Mixed-Integer Linear Models for Sensor Location Design},
journal = {Journal of Water Resources Planning and Management},
volume = {132},
number = {4},
pages = {225-233},
year = {2006},
}
@INPROCEEDINGS{Watson04,
author = {Jean-Paul Watson and Harvey J. Greenberg and William E. Hart},
title = {A multiple-objective analysis of sensor placement optimization in water networks},
booktitle = {Proceedings of the World Water and Environment Resources Congress, American Society of Civil Engineers},
pages = {1-10},
year = {2004},
}
@article{Mustafa,
author = {Aral, M. and Guan, J. and Maslia, M.},
title = {Optimal Design of Sensor Placement in Water Distribution Networks},
journal = {Journal of Water Resources Planning and Management},
volume = {136},
number = {1},
pages = {5-18},
year = {2010},
}
@article{Laird,
author={Laird, C. and Biegler, L. and van Bloemen Waanders, B. and Bartlett, R.},
title = {Contamination Source Determination for Water Networks},
journal = {Journal of Water Resources Planning and Management},
volume = {131},
number = {2},
pages = {125-134},
year = {2005},
}
@article{Laird-2006,
author={Laird, C. and Biegler, L. and van Bloemen Waanders, B},
title = {Mixed-Integer Approach for Obtaining Unique Solutions in Source Inversion of Water Networks},
journal = {Journal of Water Resources Planning and Management},
volume = {132},
number = {4},
pages = {242-251},
year = {2006},
}
@article{Chang2012Comp,
author = {Ni-Bin Chang and Natthaphon P. Pongsanone and Andrew Ernest},
title = {Optimal sensor deployment in a large-scale complex drinking water network: Comparisons between a rule-based decision support system and optimization models },
journal = {Computers \& Chemical Engineering},
volume = "43",
number = "",
pages = "191 - 199",
year = "2012",
note = "",
issn = "0098-1354",
}
@article{Pereleman_Bayseian,
author={Perelman, L. and Ostfeld, A.},
title = {Bayesian Networks for Source Intrusion Detection},
journal = {Journal of Water Resources Planning and Management},
volume = {139},
number = {4},
pages = {426-432},
year = {2013},
}
@article{Two-Tiered,
author={Klise, K. and Phillips, C. and Janke, R.},
title = {Two-Tiered Sensor Placement for Large Water Distribution Network Models},
journal = {Journal of Infrastructure Systems},
volume = {19},
number = {4},
pages = {465-473},
year = {2013},
}
@article{Ohar2015193,
author={Ziv Ohar and Ori Lahav and Avi Ostfeld},
title = "Optimal sensor placement for detecting organophosphate intrusions into water distribution systems ",
journal = "Water Research ",
volume = "73",
pages = "193 - 203",
year = "2015",
}
@article{Shastri,
author={Shastri, Y. and Diwekar, U.},
title = {Sensor Placement in Water Networks: A Stochastic Programming Approach},
journal = {Journal of Water Resources Planning and Management},
volume = {132},
number = {3},
pages = {192-203},
year = {2006},
}
@article{Palleti2016246,
author = "Venkata Reddy Palleti and Shankar Narasimhan and R. Rengaswamy and Ravi Teja and S. Murty Bhallamudi",
journal = "Computers and Chemical Engineering ",
title = {Sensor network design for contaminant detection and identification in water distribution networks },
volume = "87",
pages = "246 - 256",
year = "2016",
}
@techreport{USEPA2004a,
title={Response protocol toolbox: Planning for and responding to drinking water contamination threats and incidencts-Module 5:Public health response guide},
author={USEPA},
year={2004a},
institution={Report EPA 817-03-005 interim Final-April 2004, Washington, D.C.},
}
@techreport{USEPA2004b,
title={Response protocol toolbox: Planning for and responding to drinking water contamination threats and incidencts-Module 6:Public health response guide},
author={USEPA},
year={2004b},
institution={Report EPA 817-03-006 interim Final-April 2004, Washington, D.C.},
}
@article{mann2012real,
title={Real-time inversion in large-scale water networks using discrete measurements},
author={Mann, Angelica V and McKenna, Sean A and Hart, William E and Laird, Carl D},
journal={Computers \& Chemical Engineering},
volume={37},
pages={143--151},
year={2012},
publisher={Elsevier}
}
@article{rico2007water,
title={Water networks security: A two-stage mixed-integer stochastic program for sensor placement under uncertainty},
author={Rico-Ramirez, Vicente and Frausto-Hernandez, Sergio and Diwekar, Urmila M and Hernandez-Castro, Salvador},
journal={Computers \& chemical engineering},
volume={31},
number={5},
pages={565--573},
year={2007},
publisher={Elsevier}
}
@article{chang2012optimal,
title={Optimal sensor deployment in a large-scale complex drinking water network: Comparisons between a rule-based decision support system and optimization models},
author={Chang, Ni-Bin and Prapinpongsanone, Natthaphon and Ernest, Andrew},
journal={Computers \& Chemical Engineering},
volume={43},
pages={191--199},
year={2012},
publisher={Elsevier}
}
@article{nguyen2008design,
title={Design of nonlinear sensor networks for process plants},
author={Nguyen, DuyQuang and Bagajewicz, Miguel J},
journal={Industrial \& Engineering Chemistry Research},
volume={47},
number={15},
pages={5529--5542},
year={2008},
publisher={ACS Publications}
}
@article{bhushan2000design,
title={Design of sensor network based on the signed directed graph of the process for efficient fault diagnosis},
author={Bhushan, Mani and Rengaswamy, Raghunathan},
journal={Industrial \& engineering chemistry research},
volume={39},
number={4},
pages={999--1019},
year={2000},
publisher={ACS Publications}
}
@article{padula1999optimization,
title={Optimization strategies for sensor and actuator placement},
author={Padula, Sharon L and Kincaid, Rex K},
year={1999}
}
@inproceedings{chmielewski2002convex,
title={Convex methods in actuator placement},
author={Chmielewski, Donald J and Peng, Jui-Kun and Manthanwar, Amit M},
booktitle={Proceedings of the 2002 American Control Conference (IEEE Cat. No. CH37301)},
volume={6},
pages={4309--4314},
year={2002},
organization={IEEE}
}
@article{palleti_actuator_2018,
title = {Actuator network design to mitigate contamination effects in {Water} {Distribution} {Networks}},
volume = {108},
issn = {0098-1354},
url = {http://www.sciencedirect.com/science/article/pii/S0098135417303083},
doi = {10.1016/j.compchemeng.2017.09.003},
abstract = {Water Distribution Networks (WDNs) are vulnerable to accidental or deliberate contamination. Such contamination can be detected and identified by deploying a network of sensors. If the sensor network detects the presence of a contaminant, it is also very important to take corrective response actions to minimize the effects of contamination on the population being served. One possible mitigation option is to prevent the contaminated water from reaching any customer, by shutting down the distribution network using shut-off valves placed in the WDN. The design problem considered in this work is to determine pipes where the shut-off valves can be optimally located such that it is possible to prevent the contaminated water from reaching any demand point, regardless of the source node from where the contamination has originated. We refer to this problem as the actuator network design problem. We map the problem of actuator design into a graph partitioning problem and the minimal set of actuators are identified for ensuring the total shutdown of the network.},
urldate = {2018-05-21},
journal = {Computers \& Chemical Engineering},
author = {Palleti, Venkata Reddy and Kurian, Varghese and Narasimhan, Shankar and Rengaswamy, Raghunathan},
month = jan,
year = {2018},
keywords = {Actuator network, Graph partitioning, Observable sensor network, Water Distribution Networks},
pages = {194--205},
}