Interval-parameter robust quadratic programming for water quality management under uncertainty |
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Authors: | Y.P. Li G.H. Huang S.L. Nie D.W. Mo |
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Affiliation: | 1. College of Urban and Environmental Sciences, Peking University , Beijing, 100871, China yongping.li@iseis.org;3. Faculty of Engineering, University of Regina , Regina, SK S4S OA2, Canada;4. School of Mechanical Science and Engineering, Huazhong University of Science and Technology , Wuhan, Hubei, 430074, China;5. College of Urban and Environmental Sciences, Peking University , Beijing, 100871, China |
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Abstract: | Effective planning of water quality management is important for facilitating sustainable socio-economic development in watershed systems. An interval-parameter robust quadratic programming (IRQP) method is developed by incorporating techniques of robust programming and interval quadratic programming within a general optimization framework. The IRQP improves upon existing quadratic programming methods, and can tackle uncertainties presented as interval numbers and fuzzy sets as well as their combinations. Moreover, it can deal with nonlinearities in the objective function such that economies-of-scale effects can be reflected. The developed method is applied to a case study of a water quality management under uncertainty. A number of decision alternatives are generated based on the interval solutions as well as the projected applicable conditions. They represent multiple decision options with various environmental and economic considerations. Willingness to accept a low economic revenue will guarantee satisfying the water quality requirements. A strong desire to acquire a high benefit will run the risk of violating environmental criteria. |
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Keywords: | decision making environment fuzzy sets interval analysis quadratic optimization robust programming uncertainty water quality |
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