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Flatness-based two-degree-of-freedom control of industrial semi-batch reactors using a new observation model for an extended Kalman filter approach

机译:基于新的观测模型的扩展卡尔曼滤波方法基于平面度的工业半间歇式反应器的两自由度控制

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摘要

A flatness-based two-degree-of-freedom control is applied to industrial semi-batch reactors. Thereby a new observation model for an extended Kalman filter approach based on the results of Graichen et al. (2006) is used in order to estimate the reaction heat and the overall heat transfer coefficient. The flatness-based advanced process control scheme makes use of a calorimetric model of the reactor in order to calculate the nominal non-linear feedforward; the feedback part consists of a linear PID control. Results from production are presented including the heat up phase of the process. The performance and effectiveness of the applied flatness-based two-degree-of-freedom control are shown: a significant reduction of the batch time is achieved.
机译:基于平面度的两自由度控制应用于工业半间歇式反应器。因此,基于Graichen等人的结果,一个新的扩展卡尔曼滤波方法观测模型。为了估计反应热和总的传热系数,使用了等式(2006)。基于平整度的高级过程控制方案利用反应堆的量热模型来计算名义非线性前馈。反馈部分由线性PID控制组成。显示了生产结果,包括过程的加热阶段。显示了所应用的基于平整度的两自由度控制的性能和有效性:显着减少了批处理时间。

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