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首页> 外文期刊>Journal of Process Control >High-purity control of internal thermally coupled distillation columns based on nonlinear wave model
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High-purity control of internal thermally coupled distillation columns based on nonlinear wave model

机译:基于非线性波模型的内部热耦合蒸馏塔的高纯度控制

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摘要

Internal thermally coupled distillation column (ITCDIC) is a frontier of energy saving distillation researches, which is a great improvement on conventional distillation column (CDIC). However its high degree thermal coupling makes the control design a bottleneck problem, where data-driven model leads to obvious mismatch with the real plant in the high-purity control processes, and a first-principle model which is comprised of complex mass balance relations and thermally coupled relations could not be directly used as control model for the bad online computing efficiency. In the present work, wave theory is extended to the control design of ITCDIC with variable molar flow rates, where a general nonlinear wave model of ITCDIC processes based on the profile trial function of the component concentration distribution is proposed firstly; combined with the thermally coupled relations, a novel wave model based generic model controller (WGMC) of ITCDIC processes is developed. The benzene-toluene system for ITCDIC is studied as illustration, where WGMC is compared with another generic model controller based on a data-driven model (TGMC) and an internal model controller (IMC). In the servo control and regulatory control, WGMC exhibits the greatest performances. Detailed research results confirm the efficiency of the proposed wave model and the advantage of the proposed WGMC control strategy.
机译:内部热耦合蒸馏塔(ITCDIC)是节能蒸馏研究的前沿领域,是对常规蒸馏塔(CDIC)的重大改进。然而,其高度的热耦合使控制设计成为瓶颈问题,在高纯度控制过程中,数据驱动模型导致与实际工厂的明显不匹配,而第一原理模型则由复杂的质量平衡关系和热耦合关系不能直接用作不良在线计算效率的控制模型。在本文中,波理论被扩展到具有可变摩尔流量的ITCDIC的控制设计中,首先提出了基于组分浓度分布的分布试验函数的ITCDIC过程的通用非线性波模型。结合热耦合关系,开发了一种基于波浪模型的ITCDIC工艺通用模型控制器(WGMC)。以ITCDIC的苯-甲苯系统为例进行了研究,其中将WGMC与另一种基于数据驱动模型(TGMC)和内部模型控制器(IMC)的通用模型控制器进行了比较。在伺服控制和调节控制中,WGMC表现出最好的性能。详细的研究结果证实了所提出的波动模型的有效性以及所提出的WGMC控制策略的优势。

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