不稳定FOPTD过程的修正Smith预测器的简单调整

Q4 Engineering
Somak Karan, C. Dey
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引用次数: 1

摘要

本文报道了一种改进的Smith预测器的简单调谐方法,用于控制不稳定的一阶加时延(FOPTD)过程。在实践中,许多化学过程(如燃烧、蒸发、蒸馏等)是不稳定的,并且在自然界中以延迟为主。改进的Smith预估技术是一种公认的方法,因为它简单有效地调节延迟主导的过程,以确定理想的闭环响应。所提出的多回路控制器的两自由度(2-DOF)控制方案在设定点跟踪和负载恢复阶段都提供了性能增强。为了降低修改的Smith预测器中涉及的多个控制器的调谐复杂性,所提出的简单指南涉及所有三个控制器的相同调谐参数集。所提出的调谐方案的显著特征是,在设定点跟踪过程中没有过冲,并且在不确定的负载变化之后观察到平滑和改进的恢复。通过性能评估和稳定性分析,利用公认的基于Smith预测器的修正调谐关系,建立了所提出方法的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simple tuning of modified Smith predictor for unstable FOPTD processes
A simple tuning for modified Smith predictor is reported here to control unstable first-order plus time delay (FOPTD) processes. In practice, a good number of chemical processes (like combustion, evaporation, distillation, etc.) are unstable as well as delay dominated in nature. Modified Smith predictor technique is a well-accepted methodology for its simplicity and efficacy to regulate delay dominated processes to ascertain desirable closed-loop response. Two-degree-of-freedom (2-DOF) control scheme of the proposed multi-loop controller provides performance enhancement during both set point tracking and load recovery phases. To mitigate tuning complexity of more than one controller involved in modified Smith predictor, the proposed simple guideline involves the same set of tuning parameters for all three controllers. Distinctive feature of the proposed tuning scheme is that there is no overshoot during set point tracking as well as smooth and improved recovery is observed subsequent to uncertain load changes. Superiority of the proposed methodology is established through performance evaluation and stability analysis with well-accepted modified Smith predictor-based tuning relations.
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来源期刊
International Journal of Nanoparticles
International Journal of Nanoparticles Engineering-Mechanical Engineering
CiteScore
1.60
自引率
0.00%
发文量
15
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