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An activated-sludge-process application of integrated design and predictive control with instantaneous linearization

机译:集成化设计和瞬时线性预测控制的活性污泥工艺应用

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In this work the integrated design of the activated sludge process is addressed. The objective is to determine the best plant parameters and working point that minimize the operation costs related to the Effluent Quality and the Aeration Energy, while imposing constraints on the plant condition number (γ) and the perturbation condition number (γp), ensuring open-loop controllability. A linear multivariable predictive control (MPC) is used for the closed loop design, and it is used also a very practical non-linear version of the MPC, based on the instantaneous linearization of non linear models of the plant (the phenomenological model as well as a neural network model obtained by identification). The results are analyzed based on two aspects: the improved performance of the controlled system when using the integrated design instead of a classical economic design, and the convenience of the instantaneous linearization to realize a non-linear MPC.
机译:在这项工作中,解决了活性污泥工艺的集成设计。目的是确定最佳的设备参数和工作点,以最大程度减少与出水水质和曝气能相关的运营成本,同时对设备条件编号(γ)和扰动条件编号(γp)施加约束,从而确保回路可控性。线性多变量预测控制(MPC)用于闭环设计,它还用于MPC的非常实用的非线性版本,基于植物非线性模型(也包括现象模型)的瞬时线性化作为通过识别获得的神经网络模型)。从两个方面对结果进行了分析:使用集成设计而不是经典的经济设计时,受控系统的性能有所提高;瞬时线性化实现非线性MPC的便利性。

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