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Dynamic model prediction control for an activated sludge model based on a T-S multi-model

机译:基于T-S多模型的活性污泥模型的动态模型预测控制

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This paper investigates the use of Dynamic Model Control (DMC) on an Activated Sludge Reactor. The reduced bio-reactor activated sludge ASM1 model, which describes the biological degradation of an activate sludge reactor, is designed based on several simplifications, as a Takagi Sugeno fuzzy model (TS). The TS model structure is based on a set of linear sub models, covering the process input-output space, interpolated by a nonlinear weighting function. In the case of the ASM1 model, as specified in this paper, the system equations are available in the form with the input being u. The DMC control law developed is based on the system having input Δu, and therefore the input system needs to be modified prior to the control formulation design. The classical Multi-Input Multi-Output (MIMO) DMC formulation is then modified to integrate the TS formulation as the controller internal model. The simulation results show the effectiveness of the proposed DMC controller compared to benchmark PID in terms of error and response dynamics.
机译:本文研究了动态模型控制(DMC)在活性污泥反应器上的使用。简化的生物反应器活性污泥ASM1模型,描述了活性污泥反应器的生物降解,是基于几种简化而设计的,作为高木Sugeno模糊模型(TS)。 TS模型结构基于一组线性子模型,覆盖了过程输入输出空间,并通过非线性加权函数进行了插值。如本文所述,在ASM1模型的情况下,系统方程式的形式为输入为u。开发的DMC控制定律基于具有输入Δu的系统,因此需要在控制公式设计之前修改输入系统。然后修改经典的多输入多输出(MIMO)DMC公式,以将TS公式集成为控制器内部模型。仿真结果表明,与基准PID相比,所提出的DMC控制器在误差和响应动力学方面是有效的。

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