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Interval-parameter chance-constrained fuzzy multi-objective programming for water pollution control with sustainable wetland management

机译:可持续湿地管理水污染控制的区间参数机会约束模糊多目标规划

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Water pollution control plays a significant role in the water quality management of wetland ecosystems. In this study, an interval-parameter chance-constrained fuzzy multi-objective programming (ICFMOP) model for assisting water pollution control within a sustainable wetland management system under uncertainty was developed. The proposed ICFMOP approach not only effectively handled the uncertainties and complexities in the water pollution control management systems, it also allowed decision makers to adjust the fuzzy objective control decision variable to satisfy multiple holistic and interactive objectives. The ICFMOP model developed was then applied to a wetland water pollution control case study to assist the planning of regional wetland eco-environmental sustainability. Interval solutions of the compromise decision alternatives associated with different risk levels of constraint violations were obtained. The results were helpful for decision makers to identify desirable strategies under various social-economic, environmental and system-reliability constraints with the highest system benefits and the lowest water pollutant discharge and eco-environment impact. Moreover, tradeoffs between the multiple objectives and the constraint-violation risks could be evaluated.
机译:水污染控制在湿地生态系统的水质管理中起着重要作用。在这项研究中,开发了一种在不确定性下,开发了一种用于在可持续湿地管理系统中辅助水污染控制的间隔参数机会受限的模糊多目标规划(ICFMOP)模型。拟议的ICFMOP方法不仅有效地处理了水污染控制管理系统中的不确定性和复杂性,它还允许决策者调整模糊客观控制决策变量,以满足多个整体和互动目标。然后将ICFMOP模型应用于湿地水污染控制案例研究,以协助区域湿地生态环境可持续性的规划。获得了与不同风险违规风险水平相关的折衷决策替代方案的间隔解决方案。结果有助于决策者确定具有最高系统益处和最低水污染物排放和生态环境影响的各种社会经济,环境和系统可靠性约束下的理想策略。此外,可以评估多目标和限制性违规风险之间的权衡。

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