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Multiplicity of solutions in model-based multiobjective optimization of wastewater treatment plants

机译:污水处理厂模型基多目标优化解决方案的多种解决方案

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Wastewater treatment process design involves the optimization of multiple conflicting objectives. The detection of different equivalent solutions in terms of objective values is crucial for designers in order to efficiently switch to the new optimal operation policies if changes in the process conditions or new constraints occur. In this work, the dynamic multi-objective optimization of a municipal wastewater treatment plant model is carried out. The aim is to simultaneously optimize an economic cost term and an effluent quality index. The selected process variables for the optimization are (1) an aeration factor in the aerated tank previous to the clarifier, and (2) an internal recycle flow rate. Their time profiles are approximated using the control vector parameterization technique. To solve the multi-objective problem and find the Pareto front, the NSGA-II algorithm has been used. The simulation of different realistic scenarios which impose operational constraints (e.g., maintenance operations) reveals that, indeed, multiple solutions exist at least in some areas of the Pareto front. It is observed that different control profiles can produce nearly identical results in terms of Pareto solutions. The a priori knowledge of these equivalent solutions for different scenarios provides the decision makers with alternative choices to be adapted to their organizations policies when events altering decision variables bounds or adding new constraints to the process model occur.
机译:污水处理过程设计涉及优化多种冲突目标。在客观值方面检测不同的等效解决方案对于设计人员来说至关重要,以便在发生过程条件或发生新约束的变化时有效地切换到新的最佳操作策略。在这项工作中,进行了城市污水处理厂模型的动态多目标优化。目的是同时优化经济成本期限和出水质量指数。优化的所选过程变量是(1)在澄清器之前的充气槽中的曝气因子,(2)内部回收流量。使用控制矢量参数化技术近似时它们的时间概况是近似的。为了解决多目标问题并找到Paroto前面,已经使用了NSGA-II算法。施加运行约束(例如,维护操作)的不同现实情景的模拟表明,实际上,多种解决方案至少存在于帕累托前部的某些区域。观察到,不同的控制轮廓可以在帕累托溶液方面产生几乎相同的结果。对于不同方案的这些等效解决方案的先验知识为决策者提供了当事件改变决策变量界限或对进程模型添加新约束时,将替代选择适应其组织策略。

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