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FSWM: A hybrid fuzzy-stochastic water-management model for agricultural sustainability under uncertainty
Authors:YP Li  GH Huang  GQ Wang  YF Huang
Affiliation:a State Key Laboratory of Hydro-science and Engineering, Tsinghua University, Beijing 100084, China
b Laboratory for Earth Surface Processes, College of Urban and Environmental Sciences, Peking University, Beijing 100871, China
c Faculty of Engineering, University of Regina, Regina, Saskatchewan S4S 0A2, Canada
Abstract:A hybrid fuzzy-stochastic water-management (FSWM) model is developed for agricultural sustainability under uncertainty, based on advancement of a multistage fuzzy-stochastic quadratic programming (MFSQP) approach. In MFSQP, uncertainties presented in terms of fuzziness and randomness can be incorporated within a multilayer scenario tree, such that revised decisions are permitted in each time period based on the realized values of the uncertain events. Moreover, fuzzy quadratic terms are used in the objective function to minimize the variation of satisfaction degrees among the constraints; it allows an increased flexibility in controlling the system risk in the optimization process. Results of the case study indicate that useful solutions for the planning of agricultural water management have been obtained. In the FSWM model, a number of policies for agricultural water supply are conducted. The results obtained can help decision makers to identify desired water-allocation schemes for agricultural sustainability under uncertainty, particularly when limited water resources are available for multiple competing users.
Keywords:Fuzzy quadratic programming  Multistage  Optimization  Policy analysis  Stochastic  Uncertainty  Water management
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