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Nonlinear Model Predictive Control of a Wastewater Treatment Process Fitted with a Submerged Membrane Bioreactor

机译:淹没膜生物反应器的废水处理过程的非线性模型预测控制

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Submerged membrane bioreactors are increasingly applied for wastewater treament but requires a tight control of the membrane fouling so as to ensure safe and efficient operation. The objective of this paper is to design a nonlinear model predictive control to minimize the irreversible resistance while keeping the trans-membrane pressure, which is a good indicator of membrane fouling, at an acceptable level. To this end, the manipulated variables are the permeate flow and the air scouring flow, which allows the material layer formed on the membrane (in short the "cake") to be detached. The NMPC structure is tested in simulation considering a detailed simulator as the reference process, and a reduced-order model as the predictor. The results show that the process can be regulated until the irreversible resistance takes the main role in the fouling resistance. When this state is reached, a chemical cleaning is required, or a larger trans-membrane pressure has to be accommodated.
机译:淹没膜生物反应器越来越多地施加废水次次术,但需要对膜污染的紧密控制,以确保安全有效的操作。本文的目的是设计非线性模型预测控制,以最小化不可逆的电阻,同时保持跨膜压力,这是膜污垢的良好指标,在可接受的水平下。为此,操纵变量是渗透物流和空气冲洗流动,其允许在膜上形成的材料层(简短于“滤饼”)被拆卸。考虑到详细的模拟器作为参考过程,以及作为预测器的阶阶模型的仿真测试了NMPC结构。结果表明,该过程可以调节,直到不可逆的电阻在污垢阻力中具有主要作用。当达到该状态时,需要化学清洁,或者必须容纳更大的跨膜压力。

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