Title :
Multivariate statistical monitoring of multiphase batch processes with uneven operation durations
Author :
Yao, Yuan ; Dong, Weiwei ; Zhao, Luping ; Gao, Furong
Author_Institution :
Center for Polymer Process. & Syst., Hong Kong Univ. of Sci. & Technol., Guangzhou, China
Abstract :
In multivariate statistical monitoring, batch process models should well reflect process characteristics in order to achieve satisfactory fault detection results. In manufacturing systems, many batch processes are inherently multiphase. Usually, process features are different from one phase to another, and gradual transitions are often observed between phases. Another important characteristic of batch processes is uneven operation durations. In multiphase batch processes, not only the entire batch durations but also the phase durations may be unequal from batch to batch. In this paper, the Gaussian mixture model (GMM) method is adopted to solve both the multiphase and the uneven-duration problems simultaneously. A benchmark penicillin fermentation process is utilized to verify the phase division, transition identification and process monitoring results based on the proposed method.
Keywords :
Gaussian processes; batch processing (industrial); drugs; fault diagnosis; fermentation; manufacturing systems; pharmaceutical industry; pharmaceutical technology; process monitoring; statistical analysis; Gaussian mixture model method; batch duration; fault detection; manufacturing system; multiphase batch process; multivariate statistical monitoring; penicillin fermentation process; phase division; phase duration; process characteristics; process features; process monitoring; transition identification; uneven operation duration; Batch production systems; Data models; Monitoring; Principal component analysis; Probability; Training; Trajectory;
Conference_Titel :
Advanced Control of Industrial Processes (ADCONIP), 2011 International Symposium on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-4244-7460-8
Electronic_ISBN :
978-988-17255-0-9