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Closed-loop Identification of an Industrial Extrusion Process

机译:工业挤出过程的闭环识别

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This paper deals with the challenging problem of closed-loop identification for multivariable chemical processes and particularly the estimation of an open-loop plant model for a lab-scale industrial twin-screw extruder used in a powder coatings manufacturing line. The aim is to produce a low order efficient model in order to assist the scaling-up and the model-based control design of the manufacturing process. To achieve this goal, a two-stage indirect approach has been deployed which relies on the a-priori knowledge of the controller parameters in order to extract good estimates of the open-loop dynamics of the underlying process. As input excitation signals we have used multiple single variable step tests at various operating conditions (current industrial practice) carried out manually in order to generate the data-set which captures the dynamics of the extrusion process. In order to increase the efforts for obtaining a suitable plant model, we have employed various identification techniques, such as Prediction Error Methods (PEM) and Subspace Identification Methods (SIM) in order to generate candidate closed-loop models that fit to the original input-output process data. Then, a comparison of the estimated models was performed by means of the mean square error and data fitting criteria in order to select the model that best describes the dynamic behaviour of the extrusion process. Model validation based on closed-loop step responses also used as verification of the results.
机译:本文涉及多变量化学工艺的闭环识别问题挑战性问题,特别是粉末涂料生产线的实验室级工业双螺杆挤出机的开环植物模型的估计。目的是产生低秩序的高效模型,以帮助扩大和基于模型的制造过程的控制设计。为了实现这一目标,已经部署了一种两阶段间接方法,依赖于控制器参数的a-priori知识,以便提取底层过程的开环动态的良好估计。作为输入激励信号,我们在手动执行的各种操作条件(当前工业实践)下使用了多个单个变量步骤测试,以便生成捕获挤出过程的动态的数据集。为了增加获得合适的工厂模型的努力,我们采用了各种识别技术,例如预测误差方法(PEM)和子空间识别方法(SIMP),以便生成适合原始输入的候选闭环模型-output过程数据。然后,通过平均方误差和数据拟合标准进行估计模型的比较,以便选择最能描述挤出过程的动态行为的模型。基于闭环步骤响应的模型验证也用作结果的验证。

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