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An Adaptive Cascade Structure for the Estimation and Control of Perfusion Animal Cell Cultures

机译:灌注动物细胞培养物估计和控制的自适应级联结构

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This paper presents an effective and robust structure for the estimation and control of perfusion cell cultures, in which the cells and glucose concentrations are simultaneously controlled by manipulating the dilution and bleed rates. Firstly, a partially linearizing feedback controller is designed to ensure an approximately linear decoupled dynamics between the controlled outputs and the manipulated inputs. Then the model of the inner loop is used to design an extended Kalman filter, which estimates all the system states used in the implementation of the linearizing feedback control law from the (possibly noisy) measurements of cells and glucose concentrations. Two PI controllers are used in the outer loop for a good tracking performance, which are tuned using a receding horizon optimization procedure. The proposed structure shows good performance and robustness with respect to parameter uncertainties, non-cancelled nonlinearities and measurement noise.
机译:本文介绍了灌注细胞培养物的估计和控制的有效且稳健的结构,其中通过操纵稀释和渗流速率来同时控制细胞和葡萄糖浓度。首先,局部线性化反馈控制器被设计为确保受控输出和操纵输入之间的大致线性解耦动态。然后,内循环的模型用于设计扩展的卡尔曼滤波器,其估计来自细胞和葡萄糖浓度的(可能嘈杂)测量的线性化反馈控制规律的所有系统状态。外循环中使用两个PI控制器,以进行良好的跟踪性能,使用后退地平线优化过程进行调整。所提出的结构对于参数不确定性,未取消的非线性和测量噪声具有良好的性能和鲁棒性。

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