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Diagnosis of root cause for oscillations in closed-loop chemical process systems

机译:闭环化学过程系统中振荡振荡根本原因的诊断

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Oscillations in process plants degrade the performance of control loops resulting in poor product quality. Therefore, plant-wide oscillation diagnosis is an essential task to maintain the performance of control loops. In recent years, significant research has been performed on plant-wide oscillation diagnosis. It has been reported that the three major causes for oscillations in linear closed-loop Single-Input Single-Output (SISO) systems are: (i) aggressively tuned controller, (ii) stiction in control valves and, (iii) external disturbances. Several offline data-driven methods have been developed to address the diagnosis problem by focusing on only one of the causes for oscillations. In the current study, an offline data driven approach is developed to identify all the three major causes for oscillations. This approach has the following two components: (i) parametric Hammerstein model based stiction detection and, (ii) non-parametric Hilbert-Huang spectrum analysis for distingusihing between improperly tuned controller and disturbance caused oscillations. Simulation and industrial case studies demonstrate the efficacy of the proposed method for plant-wide oscillation diagnosis.
机译:过程植物中的振荡降解了控制回路的性能,从而导致产品质量差。因此,植物广泛的振荡诊断是保持控制回路性能的必要任务。近年来,已经对植物宽振荡诊断进行了重大研究。据报道,线性闭环单输入单输出(SISO)系统中振荡的三个主要原因是:(i)积极调谐的控制器,(ii)控制阀中的滞留和(iii)外部干扰。已经开发了几种离线数据驱动方法来通过专注于振荡的原因之一来解决诊断问题。在目前的研究中,开发了一个离线数据驱动方法,以识别振荡的所有三个主要原因。该方法具有以下两个组成部分:(i)基于参数的Hammerstein模型的静态检测,(ii)非参数Hilbert-huang谱谱分析,用于在不正确调谐的控制器和干扰之间的散射引起的振荡。仿真和工业案例研究表明了植物宽振荡诊断方法的功效。

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