Performance evaluation of adaptive based model predictive control for ethylene glycol production from dimethyl oxide hydrogenation

IF 1.6 4区 工程技术 Q3 Chemical Engineering
F. S. Rohman, Muhammad Syafiq Sulaiman, M. N. Murat, N. Aziz
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引用次数: 0

Abstract

Abstract Advance process control is a proven control and optimization technology delivering measurable and sustainable improvements in production yield, coupled with the added value of energy savings. In this work, an adaptive based model predictive control (aMPC) is developed and implemented to control the hydrogenation of dimethyl oxide to ethylene glycol (EG) in a plug flow reactor. The aMPC is compared with 3 other control schemes; proportional-integral (PI), decoupled PI (dPI) and linear model predictive control. The aim is to determine the reliability of aMPC in controlling the production rate and reactor temperature for an optimized hydrogenation reactor. The aspects compared include set point tracking, disturbance rejection and robustness test. The analysis concludes that the aMPC offers the best overall performance compared to the other control schemes.
基于自适应模型预测控制的环氧二甲酯加氢制乙二醇性能评价
先进的过程控制是一种成熟的控制和优化技术,可在生产产量方面提供可衡量和可持续的改进,同时还具有节能的附加价值。在这项工作中,开发并实现了一种基于自适应的模型预测控制(aMPC)来控制塞流反应器中氧化二甲酯加氢制乙二醇(EG)的过程。将aMPC与其他3种控制方案进行了比较;比例积分(PI)、解耦PI (dPI)和线性模型预测控制。目的是确定aMPC在优化加氢反应器中控制生产速率和反应器温度的可靠性。比较的方面包括设定值跟踪、抗干扰和鲁棒性测试。分析表明,与其他控制方案相比,aMPC具有最佳的综合性能。
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来源期刊
CiteScore
2.80
自引率
12.50%
发文量
107
审稿时长
3 months
期刊介绍: The International Journal of Chemical Reactor Engineering covers the broad fields of theoretical and applied reactor engineering. The IJCRE covers topics drawn from the substantial areas of overlap between catalysis, reaction and reactor engineering. The journal is presently edited by Hugo de Lasa and Charles Xu, counting with an impressive list of Editorial Board leading specialists in chemical reactor engineering. Authors include notable international professors and R&D industry leaders.
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