Robust placement of sensors in dynamic water distribution systems
Designing a robust sensor network to detect accidental contaminants in water distribution systems is a challenge given the uncertain nature of the contamination events (what, how much, when, where and for how long) and the dynamic nature of water distribution systems (driven by the random consumption of consumers).
We formulate a set of scenario-based minimax and minimax regret models in order to provide robust sensor-placement schemes that perform well under all realizable contamination scenarios, and thus protect water consumers. Single-and multi-objective versions of these models are then applied to a real water distribution system. A heuristic solution method is applied to solve the robust models. The concept of “sensitivity region” is used to visualize trade-offs between multiple objectives.
EfD Authors
Keywords
Centers
- china
Type of publication
- Peer reviewed
Reference
Jianhua Xu, M. Johnson, P. Fischbeck, M. Small, and J. VanBriesen (2010),"Robust placement of sensors in dynamic water distribution systems", European Journal of Operational Research, 202, 707-716Publications
- Peer reviewed
- EfD Discussion papers
- Discussion papers
- Policy briefs
- EfD/RFF Books
- Books
- Reports
- Research Briefs
- Other
- Theses PhD & MSc
- All Publications
EfD Newsletter
Subscribe to our Newsletter service
Join or share
See Also
Setting Priorities, Targeting Subsidies among Water, Sanitation, and Preventive Health [...]
This paper challenges the conventional wisdom that water and sanitation improvements and other [cont...]
Climate Policy, Uncertainty, and the Role of Technological Innovation
We study how uncertainty about climate change severity affects the relative benefits of early [cont...]
