首页> 外文会议>IFAC World Congress >Investigating the Impact of Perturbations in Chemical Processes on Data-Based Causality Analysis - Part 2: Testing Granger Causality and Transfer Entropy
【24h】

Investigating the Impact of Perturbations in Chemical Processes on Data-Based Causality Analysis - Part 2: Testing Granger Causality and Transfer Entropy

机译:研究基于数据的因果区分析的化学过程中扰动的影响 - 第2部分:测试格兰杰因果关系和转移熵

获取原文

摘要

In this two-part paper, the impact of perturbations generated by conditions typical to chemical processes is analysed. In the first part, causality analysis techniques intended for fault diagnosis are discussed in order to define the desired characteristics of the techniques. In this second part a simple process simulation was used to introduce oscillatory and step perturbations and perform a sensitivity analysis of their impact on the causality detection ability of transfer entropy and Granger causality. This procedure was repeated for three types of operation: (1) a base case open loop operation with sensor noise added, (2) open loop with process noise added and (3) closed loop operation with only sensor noise. Granger causality and transfer entropy both proved robust at detecting causality under different conditions, with some exceptions where the causal relationship was obscured: very high frequency oscillations resembled random noise; for low frequency oscillations the observation window used by the causality techniques was too small to capture the gradual dynamics; closed loop operation attenuated slow acting oscillations and step inputs; and addition of process noise decreased the apparent strength of the causality. Comparing the two techniques: Granger causality proved more reliable than transfer entropy for oscillatory perturbations; the effect of the controller obscuring the causal connection was less pronounced for transfer entropy; and transfer entropy appeared much more sensitive to the influence of additional process noise.
机译:在这两部分纸张中,分析了典型的条件产生的扰动的影响。在第一部分中,讨论用于故障诊断的因果分析技术,以便定义技术的所需特性。在该第二部分中,使用简单的过程模拟来引入振荡和步骤扰动,并对它们对转移熵和格兰杰因果关系的因果检测能力的影响进行敏感性分析。该过程重复了三种操作:(1)基本壳体开环操作,添加了传感器噪声,(2)开环,加入过程噪声和(3)仅具有传感器噪声的闭环操作。 Granger因果关系和转移熵在不同条件下检测因果关系中都证明了鲁棒,其中一些例外情况下模糊不清:非常高的频率振荡类似随机噪声;对于低频振荡,因果技术使用的观测窗口太小而无法捕获逐渐动态;闭环操作减弱慢效振荡和步进输入;并添加过程噪声降低了因果关系的表观强度。比较这两种技术:格兰杰因果关系证明比转移熵用于振荡扰动更可靠;控制因果关系的控制器的效果不太明显转移熵;并转移熵对额外的过程噪声的影响似乎更敏感。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号