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Stiction Quantification based on Time and Frequency Domain Criterions

机译:基于时间和频率域标准的沉默量化

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Valve stiction is one of the most common causes for poor performance in industrial control loops. Therefore, a non-invasive method which can detect and quantify stiction is urgently needed in the process industry. Most of the current stiction estimation methods use time domain criterion, e.g. Mean Square Error, to jointly identify the stiction and process model parameters. However, stiction induced oscillation is a phenomenon which has some specific characteristics in the frequency domain. Thus, extracting frequency domain information in the routine operation data will provide a more reliable and accurate stiction estimation. In this work, under the framework of Hammerstein model identification and global optimization, a new stiction quantification method based on time and frequency domain criterions is proposed. Several simulation case studies are demonstrated to validate the proposed method.
机译:阀门静态是工业控制回路性能不佳的最常见原因之一。 因此,在工艺行业中迫切需要可以检测和量化沉默的非侵入性方法。 大多数当前静态估计方法使用时域标准,例如时域标准。 均方误差,共同识别静态和过程模型参数。 然而,静态诱导的振荡是在频域中具有一些特定特征的现象。 因此,在常规操作数据中提取频域信息将提供更可靠和准确的静态估计。 在这项工作中,在Hammerstein模型识别和全局优化的框架下,提出了一种基于时间和频域标准的新的静态量化方法。 对若干模拟案例研究证明了验证所提出的方法。

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