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Optimal design activated sludge process by means of multi-objective optimization: case study in Benchmark Simulation Model 1 (BSM1)

机译:通过多目标优化来优化设计活性污泥工艺:基准仿真模型1(BSM1)中的案例研究

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摘要

Optimal design of activated sludge process (ASP) using multi-objective optimization was studied, and a benchmark process in Benchmark Simulation Model 1 (BSM1) was taken as a target process. The objectives of the study were to achieve four indexes of percentage of effluent violation (PEV), overall cost index (OCI), total volume and total suspended solids, making up four cases for comparative analysis. Models were solved by the non-dominated sorting genetic algorithm in MATLAB. Results show that: ineffective solutions can be rejected by adding constraints, and newly added objectives can affect the relationship between the existing objectives; taking Pareto solutions as process parameters, the performance indexes of PEV and OCI can be improved more than with the default process parameters of BSM1, especially for N removal and resistance against dynamic NH_4~+-N in influent. The results indicate that multi-objective optimization is a useful method for optimal design ASP.
机译:研究了基于多目标优化的活性污泥工艺(ASP)的优化设计,并以Benchmark Simulation Model 1(BSM1)中的基准工艺为目标工艺。该研究的目的是要实现四个指标,分别是出水率(PEV),总成本指标(OCI),总体积和总悬浮固体,以比较分析四个案例。通过MATLAB中的非支配排序遗传算法对模型进行求解。结果表明:无效的解决方案可以通过添加约束来拒绝,新添加的目标可以影响现有目标之间的关系;以Pareto解决方案为工艺参数,PEV和OCI的性能指标比BSM1的默认工艺参数有更大的提高,特别是对于进水中N的去除和对动态NH_4〜+ -N的抵抗力。结果表明,多目标优化是优化设计ASP的有用方法。

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