Active Disturbance Rejection Control of a methanol-water separation distillation column

Fahad Al-Kalbani, Saif Mohamed Al Hosni, Jie Zhang
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引用次数: 6

Abstract

ADRC has been shown capable of overcoming the limitations of conventional PID controller in dealing with setpoint jump, noise sensitivity because of derivative term, simplicity of the linear weighted sum of three terms (current error, past error and the rate of change), and the integral term. However, applications of ADRC in the chemical process control area are relative few, especially in the control of multi-input and multi-output nonlinear chemical processes. This paper presents using ADRC to control the top and bottom product compositions of a methanol-water separation distillation column, which is simulated using a rigorous nonlinear tray by tray mechanistic model. It is shown that ADRC gives much improved control performance compared to PID control.
甲醇-水分离精馏塔自抗扰控制
自抗扰控制器已被证明能够克服传统PID控制器在处理设定值跳变、由于导数项引起的噪声灵敏度、三项(当前误差、过去误差和变化率)的线性加权和的简单性以及积分项方面的局限性。然而,自抗扰控制器在化工过程控制领域的应用相对较少,特别是在多输入多输出非线性化工过程的控制方面。本文介绍了用自抗扰控制器控制甲醇-水分离精馏塔的顶、底产物组成,并采用严格的非线性塔板-塔板力学模型对其进行了模拟。结果表明,与PID控制相比,自抗扰控制器的控制性能有很大提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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