A comparative study for flow control using SCIC and NPIC controllers

P. Mishra, Vineet Kumar, K. Rana
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引用次数: 1

Abstract

Flow control is essentially a very important part of the process control industries. The flow control loops often employ pneumatic control valves as the final control element. These control valves suffer from various nonlinearities and stiction is most common of these. Due to stiction effect in the pneumatic control valves, the commonly used proportional-integral-derivative (PID) controller introduces limit cycles in the flow control loops, which essentially deteriorates the productivity of the industrial environment. To curb such non sinusoidal oscillations in these control loops, recently two novel controllers have been proposed namely, Stiction Combating Intelligent Controller (SCIC) and Nonlinear Proportional Integral Controller (NPIC). These two controllers have been earlier thoroughly evaluated for flow control studies and are claimed to be very efficient for curbing the limit cycle behavior in the control loops. However, a comparative study between them is missing for the same, which would fill the void existing at present. This paper addresses the same issue and a comparative study between the two controllers is performed and presented in this paper for the setpoint tracking, disturbance rejection and parametric uncertainty problems.
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基于SCIC和NPIC控制器的流量控制比较研究
流量控制本质上是过程控制工业中非常重要的一部分。流量控制回路通常采用气动控制阀作为最终控制元件。这些控制阀遭受各种非线性和粘滞是最常见的。由于气动控制阀的伸缩效应,常用的比例-积分-导数(PID)控制器在流量控制回路中引入了极限环,这从本质上恶化了工业环境的生产率。为了抑制这些控制回路中的非正弦振荡,最近提出了两种新型控制器,即抗粘智能控制器(SCIC)和非线性比例积分控制器(NPIC)。这两种控制器已经在流量控制研究中进行了彻底的评估,并且声称在控制回路中抑制极限环行为非常有效。然而,缺乏对两者的比较研究,这将填补目前存在的空白。本文解决了同样的问题,并对两种控制器的设定值跟踪、干扰抑制和参数不确定性问题进行了比较研究。
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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