Please use this identifier to cite or link to this item: https://doi.org/10.1016/j.compchemeng.2007.05.010
DC FieldValue
dc.titleOnline monitoring of multi-phase batch processes using phase-based multivariate statistical process control
dc.contributor.authorDoan, X.-T.
dc.contributor.authorSrinivasan, R.
dc.date.accessioned2014-06-17T07:45:56Z
dc.date.available2014-06-17T07:45:56Z
dc.date.issued2008-01
dc.identifier.citationDoan, X.-T., Srinivasan, R. (2008-01). Online monitoring of multi-phase batch processes using phase-based multivariate statistical process control. Computers and Chemical Engineering 32 (1-2) : 230-243. ScholarBank@NUS Repository. https://doi.org/10.1016/j.compchemeng.2007.05.010
dc.identifier.issn00981354
dc.identifier.urihttp://scholarbank.nus.edu.sg/handle/10635/64330
dc.description.abstractOnline monitoring of batch processes using multivariate statistical methods has attracted enormous research interests due to its practical importance. In this paper, we focus on an important issue that continues to confound online batch process monitoring-run-to-run variations that do not confirm to a normal distribution around a reference trajectory. Here, we show that a phase-based decomposition of the trajectory offers a systematic way to overcome this challenge. In our approach, phase changes are detected online using Singular points in key variables. Run-to-run variations among different instances of a phase are synchronized by using time warping. Finally, phased-based multivariate statistical process control models are used to monitor the execution of the batch and detect abnormalities. This phase-based monitoring approach is robust to run-to-run variations arising from changes in initial conditions and event timings as is illustrated using a well-known fermentation process simulation. © 2007 Elsevier Ltd. All rights reserved.
dc.description.urihttp://libproxy1.nus.edu.sg/login?url=http://dx.doi.org/10.1016/j.compchemeng.2007.05.010
dc.sourceScopus
dc.subjectDynamic PCA
dc.subjectDynamic time warping
dc.subjectFeature synchronization
dc.subjectMulti-stage process
dc.subjectSingular point
dc.typeArticle
dc.contributor.departmentCHEMICAL & BIOMOLECULAR ENGINEERING
dc.description.doi10.1016/j.compchemeng.2007.05.010
dc.description.sourcetitleComputers and Chemical Engineering
dc.description.volume32
dc.description.issue1-2
dc.description.page230-243
dc.description.codenCCEND
dc.identifier.isiut000251636100021
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