13C同位素分离过程的自适应控制

Roxana-Maria Motorga, V. Muresan, M. Abrudean, H. Valean, I. Clitan, M. Ungureșan
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引用次数: 0

摘要

本文提出了控制分离柱内部和输出端13C同位素浓度所需的解决方案。研究了经典控制策略,即采用齐格勒-尼科尔斯方法整定的PI控制器和PID控制器。采用自适应机制计算各方法的最优参数,提高了系统性能,并对两种方法的结果进行了比较。氨基甲酸酯与二氧化碳发生化学交换,导致13C同位素富集。该过程是一个分布参数过程,取决于时间常数和在柱高中的位置,当该过程在过渡状态下工作时,可以在确定解析解后进行模拟。控制策略需要实现过程建模-希望通过使用最佳量的单乙醇胺溶液(输入流)来达到13C同位素浓度。自适应机构由一个PI控制器组成,该控制器确定两个控制器的适当时间常数,因此可以在分离柱的任何高度控制13C同位素浓度,通过减少沉淀时间来提高系统的性能-如果浓度在某些时刻发生变化,自适应机构也能够满足新的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive control for the 13C isotope separation process
In this paper a solution required in order to control the 13C isotope concentration inside and at the output of the separation column is presented. The classical control strategies, namely the PI and the PID controllers tunned using the Ziegler-Nichols method, were approached. The system performances were improved using an adaptive mechanism to compute their optimal parameters and a comparison between the results obtained between those methods is presented. The chemical exchange process between the carbamate and the carbon dioxide taking place, it results the enriched 13C isotope. This process is a distributed parameters one, depending on the time constant and on the position in the column's height, and it can be simulated after determining an analytical solution when the process is working in the transitory regime. The control strategies require the implementation of the process modelling – it is desired to reach the 13C isotope concentration by using an optimal amount of monoethanolamine solution, the input flow. The adaptive mechanism consists of a PI controller which determines the proper time constants of the two controllers so the control of the 13C isotope concentration is possible in any point of height in the separation column, improving the performances of the system by reducing the settling time – if the concentration suffers variations at certain moments of time, the adaptive mechanism is also capable of settling with the new requirements.
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