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Design of hierarchical control strategies for biological wastewater treatment plants to reduce operational costs

机译:生物污水处理厂的分层控制策略设计,降低运营成本

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In this research,hierarchical control strategies are developed for biological wastewater treatment plants(WWTPs)to reduce the operational expenses.The benchmark simulation model no.1(BSM1)is used as the working platform which is developed based on activated sludge model no.1(ASM1)to control dissolved oxygen in aerobic reactors and nitrate levels in anoxic reactors.Fractional PI(FPI)controllers are designed at the lower level and model predictive control(MPC)and a fuzzy controller are designed at higher level in order to achieve enhanced set-point tracking.Initially,linear state space model is developed around the operating point using prediction-error method for lower level.For identification of the higher level model,the lower level control loop is closed in a feedback sense with the designed controller.Based on the identified model in the higher level,the controllers are designed.This paper presents two combinations of hierarchical control strategies: FPI-Fuzzy and FPI-MPC.It is observed that FPI controller at the lower level and MPC controller at the higher level results in better plant performance with better set-point tracking with reduced operational costs.It is observed that FPI-Fuzzy control strategy results in better EQI of 7041.7 for storm weather condition which also resulted in 48% reduction in total nitrogen violations and FPI-MPC results in better OCI of 17119.6 and this strategy resulted in nearly 38% reduction in total nitrogen violations.A significant improvement in the plant performance is observed for dry and rain weather conditions as well.
机译:在本研究中,为生物废水处理厂(WWTP)开发了分层控制策略,以减少运营费用。基准模拟模型No.1(BSM1)用作基于活性污泥模型的工作平台。 (ASM1)以控制溶解氧在有氧反应器中,缺氧反应器中的硝酸盐水平。在较低水平和模型预测控制(MPC)中设计了PI(FPI)控制器,并且模糊控制器在更高的水平下设计以实现增强设定点跟踪。最终,使用预测误差方法在较低级别的预测误差方法周围开发线性状态空间模型。对于更高级别模型的识别,较低电平控制回路在具有设计控制器的反馈意义上关闭。基于识别的模型在较高级别中,设计了控制器。本文提出了两种层次控制策略的两个组合:FPI-Fuzzy和FPI-MPC.it是OBSE在较低级别的下层和MPC控制器处的FPI控制器导致更好的工厂性能,具有更好的设定点跟踪,具有减少的运营成本。据观察,FPI-FUZZY控制策略导致7041.7的更好的EQI为风暴天气条件这也导致总氮侵犯的48%降低,FPI-MPC导致更好的OCI为17119.6,这项策略导致总氮侵犯的近38%降低。对于干旱和雨天气条件,观察到植物性能的显着改善也是。

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