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A generalized fuzzy linear programming approach for environmental management problem under uncertainty

机译:不确定性环境管理问题的广义模糊线性规划方法

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摘要

In this study, a generalized fuzzy linear programming (GFLP) method was developed to deal with uncertainties expressed as fuzzy sets that exist in the constraints and objective function. A stepwise interactive algorithm (SIA) was advanced to solve GFLP model and generate solutions expressed as fuzzy sets. To demonstrate its application, the developed GFLP method was applied to a regional sulfur dioxide (SO_2) control planning model to identify effective SO_2 mitigation polices with a minimized system performance cost under uncertainty. The results were obtained to represent the amount of SO_2 allocated to different control measures from different sources. Compared with the conventional interval-parameter linear programming (ILP) approach, the solutions obtained through GFLP were expressed as fuzzy sets, which can provide intervals for the decision variables and objective function, as well as related possibilities. Therefore, the decision makers can make a tradeoff between model stability and the plausibility based on solutions obtained through GFLP, and then identify desired policies for SO_2-emission control under uncertainty.
机译:在这项研究中,开发了广义模糊线性规划(GFLP)方法来处理不确定性,这些不确定性表示为存在于约束和目标函数中的模糊集。提出了一种逐步交互式算法(SIA)来求解GFLP模型并生成表示为模糊集的解。为了证明其应用,将开发的GFLP方法应用于区域二氧化硫(SO_2)控制计划模型,以在不确定性下以最小的系统性能成本来识别有效的SO_2缓解策略。获得的结果代表了从不同来源分配给不同控制措施的SO_2量。与传统的间隔参数线性规划(ILP)方法相比,通过GFLP获得的解表示为模糊集,可以为决策变量和目标函数提供间隔,并提供相关的可能性。因此,决策者可以基于通过GFLP获得的解决方案在模型稳定性和合理性之间进行权衡,然后确定不确定性下SO_2排放控制所需的策略。

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    Faculty of Engineering, University of Regina, Regina, Saskatchewan, Canada;

    Faculty of Engineering, University of Regina, Regina, Saskatchewan, Canada S4S 0A2;

    Faculty of Engineering, University of Regina, Regina, Saskatchewan, Canada;

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