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Improvements in Dissolved Oxygen Control of an Activated Sludge Wastewater Treatment Process

机译:活性污泥废水处理工艺中溶解氧控制的改进

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Nowadays there is great emphasis on the optimization of wastewater treatment plants (WWTP) due to the strict regulations concerning discharged waters. The control techniques currently used in WWTPs include simple PLC-based proportional-integral-derivative control techniques. The most complex part of wastewater treatment is the activated sludge process, where the sewage is biologically treated by means of a microorganism culture in the presence of air or oxygen. This paper shows a simple way of decreasing the operational costs, together with an increase in performance and disturbances rejection by using fractional order Proportional-Integral controllers on the dissolved oxygen concentration and on the air pressure generated by the air blower. Closed loop system performance, using the fractional order Proportional-Integral controller, are compared to those obtained by using the conventional Proportional-Integral controller on the dissolved oxygen concentration. They prove the robustness of the former controller against the parameters variations. The controllers are designed and simulated on the mathematical model of the WWTP of Romanofir, Talmaciu.
机译:由于对排放水的严格规定,如今非常重视废水处理厂(WWTP)的优化。当前在污水处理厂中使用的控制技术包括基于PLC的简单比例积分微分控制技术。废水处理中最复杂的部分是活性污泥法,其中通过在空气或氧气存在下进行微生物培养对污水进行生物处理。本文显示了一种简单的方法,可通过使用分数阶比例积分控制器来控制溶解氧浓度和鼓风机产生的气压,从而降低运营成本,并提高性能和消除干扰。将使用分数阶比例积分控制器的闭环系统性能与使用常规比例积分控制器的溶解氧浓度进行比较。他们证明了前者针对参数变化的鲁棒性。该控制器是根据罗曼诺菲尔(Talmaciu)的WWTP污水处理厂的数学模型设计和仿真的。

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