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首页> 外文期刊>Journal of Process Control >Model-based control of continuous emulsion co-polymerization in a lab-scale tubular reactor
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Model-based control of continuous emulsion co-polymerization in a lab-scale tubular reactor

机译:基于模型的连续乳液共聚在实验室管状反应器中的控制

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摘要

Model-based control methods like nonlinear model predictive control (NMPC) is a promising approach to control complex chemical processes. While there are many publications on theoretical aspects and simulation studies, the experimental evaluation of NMPC is limited. We present the implementation and experimental validation of model-based control for continuous emulsion co-polymerization in a tubular reactor. We compare two schemes to control the total monomer conversion and the polymer composition at the reactor outlet. The two control schemes are (i) an NMPC scheme and (ii) a heuristic control approach, which consists of PI control, ratio control and feed forward control. The process model consists of a set of differential algebraic equations which capture the polymerization kinetics as well as the dynamics of the auxiliary equipment in the setup. We evaluate the performance of the NMPC scheme in silico for different constraints on the maximum reactor temperature. The simulation studies show that the NMPC maintains the temperature constraints. However, decreasing the maximum allowable temperature in the reactor results in a deviation of the total monomer conversion and polymer composition from the desired specifications. We also experimentally investigate the performance of both control schemes. As expected, the experimental studies show that both control schemes are able to reduce the variation of the polymer composition compared to the case without supervisory control. Although a deviation of the controlled variables from their setpoint values is observed in both control schemes, this deviation from setpoint is less with the NMPC scheme than with the heuristic control scheme. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基于模型的控制方法,如非线性模型预测控制(NMPC)是控制复杂化学过程的有希望的方法。虽然有许多关于理论方面和仿真研究的出版物,但是NMPC的实验评估有限。我们介绍了对管式反应器中连续乳液共聚的基于模型的控制的实施和实验验证。我们比较两种方案来控制反应器出口的总单体转化和聚合物组合物。这两个控制方案是(i)NMPC方案和(ii)启发式控制方法,由PI控制,比率控制和前锋控制组成。过程模型包括一组差分代数方程,其捕获聚合动力学以及设置中辅助设备的动态。我们评估了硅中NMPC方案在硅中的性能对最大反应器温度的不同约束。仿真研究表明,NMPC保持温度约束。然而,降低反应器中的最大允许温度导致总单体转化和聚合物组合物免于所需的规格。我们还通过实验研究了控制方案的性能。正如预期的那样,实验研究表明,与没有监控控制的情况相比,两个控制方案都能够降低聚合物组成的变化。尽管在两个控制方案中观察到受控变量与它们的设定值值的偏差,但是对于与启发式控制方案的NMPC方案,与设定值的这种偏差较小。 (c)2019年elestvier有限公司保留所有权利。

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