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Practical Model and Detection Algorithm for Valve Stiction

机译:阀门静态的实用模型及检测算法

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Stiction is the most common problem in pneumatic control valves, which are widely used in the process industry. Stiction causes fluctuation of process variables, which lowers productivity. Therefore, developing a method to detect stiction and distinguish it from other causes is crucial to help operators take an appropriate action for improving control performance. The present work proposes a valve stiction model and new stiction detection algorithms. Using only two parameters, the proposed model can describe the stiction phenomenon with sufficient accuracy. The usefulness of the proposed detection methods are demonstrated by comparing them with a conventional method. The proposed methods are shown to successfully detect valve stiction, distinguish it from bad tuning or disturbances, and quantify the degree of stiction, by using simulation data sets and real operation data sets of several chemical processes.
机译:沉默是气动控制阀中最常见的问题,广泛用于工艺业。静力导致过程变量的波动,降低了生产率。因此,开发一种检测静态的方法并将其与其他原因区分开来对帮助操作人员采取适当的动作来提高控制性能至关重要。本工作提出了阀门静态模型和新的静态检测算法。仅使用两个参数,所提出的模型可以描述具有足够精度的静态现象。通过将它们与常规方法进行比较来证明所提出的检测方法的有用性。所提出的方法显示成功检测阀静量,将其与不良调谐或干扰区分开,并通过使用仿真数据集和几种化学过程的实际操作数据集来量化静态程度。

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