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An Improved Qualitative Shape Analysis Technique For Automatic Detection Of Valve Stiction In Flow Control Loops

机译:用于流量控制回路中阀门静力自动检测的改进定性形状分析技术

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Valve stiction is a frequent cause of loop performance deterioration and in recent literature many techniques have been proposed for its automatic detection. Yamashita [(2006). An automatic method for detection of valve stiction in process control loops. Control Engineering Practice, 14, 503-510) proposes a method based on qualitative shape analysis, which is very effective for flow control loops where the valve position (or the proportional flow rate) is available as measurement.rnHowever, additional stiction patterns observed in industrial data are not included in the original algorithm. This paper provides an analysis and explanation of these patterns on the basis of valve type, loop dynamics and control system setup, by means of simulation and comparison with industrial data. The technique is then extended and applied to a plant data set in order to show the improved efficiency in detecting stiction.
机译:阀门静摩擦是回路性能下降的常见原因,在最近的文献中,已经提出了许多技术来对其进行自动检测。 Yamashita [(2006年)。一种用于检测过程控制回路中阀门静摩擦的自动方法。 (Control Engineering Practice,14,503-510)提出了一种基于定性形状分析的方法,该方法对于流量控制回路非常有效,在该流量控制回路中可以测量阀门位置(或比例流量)。原始算法中不包含工业数据。本文通过仿真和与工业数据的比较,基于阀门类型,回路动力学和控制系统设置对这些模式进行了分析和说明。然后将该技术扩展并应用于工厂数据集,以显示改进的检测静摩擦的效率。

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