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Management of Environmental Pollution Control Problems under Stochastic Uncertainty

机译:随机不确定性下的环境污染控制问题管理

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This study investigated the applicability of using genetic algorithm for tackling chance-constrained programming models utilized for solving environmental pollution-control management problems. Compared with conventional chance-constrained methods, the proposed one could deal with stochastic models with both the left- and right-hand-side constraints being involved with random variables. Two study cases which were related to air quality management and river water pollution control were applied to illustrate the applicability of the proposed method. Both study cases had needs of seeking cost-effective management schemes under uncertainty. The study results indicated that the GA-based CCP models could effectively communicate uncertainties into optimization process, and generate solutions that contain a spectrum of potential waste treatment options with both risk and cost information. Decision alternatives could be obtained by analyzing tradeoffs between the waste handling cost and the system-failure risk due to inherent uncertainties. Compared with the linearization solution method of traditional CCP models, the introduction a GA algorithm could facilitate the solution of more general stochastic models. The proposed method is not restricted to environmental problems and can also be applied to many other engineering management systems.
机译:本研究调查了利用遗传算法来解决用于解决环境污染控制管理问题的机会约束规划模型。与传统的机会约束方法相比,所提出的方法可以处理随机和右手侧约束的随机模型,随机变量涉及随机变量。应用与空气质量管理和河水污染控制有关的两项研究案例,说明了该方法的适用性。这两项研究案例都需要在不确定性下寻求具有成本效益的管理计划。该研究结果表明,基于GA的CCP模型可以有效地将不确定性传达到优化过程中,并产生包含风险和成本信息的潜在废物处理选项的解决方案。可以通过分析废物处理成本与由于固有的不确定性的系统故障风险之间的权衡来获得决策替代方案。与传统CCP模型的线性化解决方法相比,引言GA算法可以促进更通用的随机模型的解决方案。该方法不限于环境问题,也可以应用于许多其他工程管理系统。

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