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Journal ArticleDOI

Dynamic risk assessment and fault detection using a multivariate technique

Omid Zadakbar, +2 more
- 01 Dec 2013 - 
- Vol. 32, Iss: 4, pp 365-375
TLDR
In this paper, a multivariate risk-based fault detection and diagnosis technique is proposed to eliminate faults that are not serious and to provide a dynamic process risk indication at each sampling instant.
Abstract
In the context of process safety, significant improvements are needed in fault detection methods, especially, in the areas of early detection and warning. In this article, a multivariate risk-based fault detection and diagnosis technique is proposed. The key elements of this technique are to eliminate faults that are not serious and to provide a dynamic process risk indication at each sampling instant. A multivariable residual generation process based on the Kalman filter has been combined with a risk assessment procedure. The use of the Kalman filter makes the method more robust to false alarms, which is an important aspect of any fault detection algorithm that targets the safety of a process. In addition, we consider significant differences in the severity of the faults associated with different process variables. We also take into account the varying intensity of damage caused by the increasing and decreasing rates of fault and the need to treat those cases differently. © 2013 American Institute of Chemical Engineers Process Saf Prog 32: 365–375, 2013

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Citations
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Journal ArticleDOI

Methods and models in process safety and risk management: Past, present and future

TL;DR: In this paper, the authors reviewed past progress in the development of methods and models for process safety and risk management and highlighted the present research trends; also it outlines the opinions of the authors regarding the future research direction in the field.
Journal ArticleDOI

The future of risk assessment

TL;DR: This paper swings on the rapid changes and innovations that the World that the authors live in is experiencing, and analyze them with respect to the challenges that these pose to the field of risk assessment.
Journal ArticleDOI

Dynamic Risk Assessment and Fault Detection Using Principal Component Analysis

TL;DR: A methodology to calculate process risk in combination with a data based fault detection method which has more power in discerning between operational deviations and abnormal conditions which potentially may cause an unwanted situation (an accident).
Journal ArticleDOI

Dynamic Risk Assessment Based on Statistical Failure Data and Condition-Monitoring Degradation Data

TL;DR: By introducing condition-monitoring data on the system degradation process, it is possible to capture the system-specific characteristics, and, therefore, provide a more complete and accurate description of the risk of the target system.
References
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Journal ArticleDOI

Process fault detection based on modeling and estimation methods-A survey

Rolf Isermann
- 01 Jul 1984 - 
TL;DR: This contribution presents a brief summary of some basic fault detection methods, followed by a description of suitable parameter estimation methods for continuous-time models.
Journal ArticleDOI

A review of process fault detection and diagnosis: Part III: Process history based methods

TL;DR: This final part discusses fault diagnosis methods that are based on historic process knowledge that need to be addressed for the successful design and implementation of practical intelligent supervisory control systems for the process industries.
Journal ArticleDOI

Multivariate process monitoring and fault diagnosis by multi-scale PCA

TL;DR: In this article, a multi-scale principal component analysis (MSPCA) is used for fault detection and diagnosis in chemical process monitoring and control, which is able to outperform the conventional PCA based approach in detecting and identifying real process faults in an industrial process.
Journal ArticleDOI

DYNAMICS AND CONTROL OF DISTILLATION COLUMNS A tutorial introduction

TL;DR: In this article, the authors summarized some of the important aspects of the steady-state operation, dynamics and control of continuous distillation columns, focusing on two-product columns separating relatively ideal binary mixtures.
Journal ArticleDOI

Understanding the Dynamic Behavior of Distillation Columns

TL;DR: Mise en place d'un modele a deux constantes de temps en tenant compte des changements d'ecoulement internes et externes.
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