A robust method for coupling detection among process variables

S. Hussain, H. Gabbar
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引用次数: 8

Abstract

Investigating complex interaction patterns among multiple process variables (PVs) is an important task. This paper demonstrates a robust method to estimate direction and strength of interactions among process variables. The method captures rapid changes in process variables through wavelet analysis. It uses single degree of freedom (SDOF) modelling to approximate a non-linear system in terms of linear damped forced oscillators. Phase interaction theory then extracts coupling direction and strength among process variables. The robustness of the proposed technique is verified on simulated Van der Pol oscillators with known directionality and coupling strength with varying signal to noise ratio (SNR). The effectiveness and feasibility of the proposed method have also been demonstrated on simulated data emanating from Canada Deuterium Uranium (CANDU) nuclear power plant steam generator level control mechanism. The extracted patterns of interaction structure among PVs aid to uncover the polishing mechanisms an...
一种过程变量间耦合检测的鲁棒方法
研究多过程变量(pv)之间的复杂交互模式是一项重要任务。本文给出了一种估计过程变量间相互作用方向和强度的鲁棒方法。该方法通过小波分析捕捉过程变量的快速变化。它使用单自由度(SDOF)建模来近似线性阻尼强迫振荡器的非线性系统。相相互作用理论提取了过程变量之间的耦合方向和强度。在具有已知方向性和不同信噪比耦合强度的模拟范德波尔振荡器上验证了该方法的鲁棒性。通过加拿大核电厂蒸汽发生器液位控制机构的模拟数据,验证了该方法的有效性和可行性。所提取的pv相互作用结构模式有助于揭示抛光机理和抛光工艺。
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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