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Adjustable Robust Optimization for Integrated Power and Water Systems under Uncertainty

CSS Publication Number
CSS25-14
Full Publication Date
May 15, 2025
Abstract

Water distribution systems (WDS) and power distribution systems (PDS) are strongly connected and mutually affect each other. Recently, several studies suggested accounting for this dependency to enhance the overall efficiency of the two critical systems. However, in these studies, the uncertainty inherent in the two systems got less attention. Here, we emphasize the uncertainty modeling by using robust optimization (RO) and adjustable robust optimization (ARO) to co-optimize the day-ahead scheduling of an integrated PDS–WDS. In this problem, we consider the uncertainty in both power loads and water demands and its impact on the operational strategies of the coupled system. Using RO and ARO, we can derive the Pareto frontier between operation cost and system reliability. Our results suggest that for high levels of reliability, the ARO outperforms the RO approach, as it can achieve a high level of reliability with lower operation costs.

Co-Author(s)
Gal Perelman
Mashor Housh
Avi Ostfeld
Research Areas
Water Resources
Framework, Methods & Tools
Energy Systems
Energy
Keywords

Power systems, water systems, efficiency, robust optimization, operation cost, reliability 

Publication Type
Conference Proceeding
Digital Object Identifier
10.1061/9780784486184.090
Full Citation

Perelman, G., Navon, A., Housh, Mashor, Ostfeld, A. (2025). Adjustable Robust Optimization for Integrated Power and Water Systems under Uncertainty. World Environmental and Water Resources Congress 2025, 962-972, CSS25-14