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題名 Process disturbance identification through integration of spatiotemporal ICA and CART approach
作者 邱志洲;黃馨瑩
Chiu, Chih-Chou; Hwang, Shin-Ying; Cook, Deborah F.; Luh, Yuan-Ping
貢獻者 資管系
關鍵詞 Process disturbance;Statistical process control;Engineering process control;Spatiotemporal independent component analysis;Classification and regression tree
日期 2009-12
上傳時間 21-Feb-2014 10:57:08 (UTC+8)
摘要 Many studies have been conducted over the past several years evaluating the integrated use of statistical process control (SPC) and engineering process control (EPC). The majority of these studies reported that combining SPC with EPC outperforms the use of only SPC or EPC. Basically, the former aims to rapidly detect assignable causes and time points for abnormalities that take place during process; and the latter is a method in which input variables are adjusted against process outputs through a feedback control mechanism. Although combining SPC with EPC can effectively detect time points when abnormalities occur during process, their combination can also cause an increased occurrence of false alarms when autocorrelation is present in the process. In this study, to increase the accuracy of process disturbance identification, we propose the integration of spatiotemporal independent component analysis (stICA) with the classification and regression tree (CART) approach to improve our capability to identify process disturbances and recognize shifts in the correlated process parameters. The integration of the CART methodology results in the development of decision rules that can provide valuable information related to the impact of variation in process variable values. These decision rules can provide an increased understanding of process behavior and useful information for process control. For comparison, the integration of traditional principle component analysis (PCA) with CART (called PCA-CART), ICA with CART (called ICA-CART) and cumulative sum chart approaches were applied to evaluate the identification capability of the proposed approach. As the results reveal, the proposed approach is more effective for monitoring correlated process.
關聯 Neural Computing & Applications, 19(5), 644-689
資料來源 http://link.springer.com/article/10.1007%2Fs00521-009-0324-5
資料類型 article
DOI http://dx.doi.org/10.1007/s00521-009-0324-5
dc.contributor 資管系en_US
dc.creator (作者) 邱志洲;黃馨瑩zh_TW
dc.creator (作者) Chiu, Chih-Chou; Hwang, Shin-Ying; Cook, Deborah F.; Luh, Yuan-Pingen_US
dc.date (日期) 2009-12en_US
dc.date.accessioned 21-Feb-2014 10:57:08 (UTC+8)-
dc.date.available 21-Feb-2014 10:57:08 (UTC+8)-
dc.date.issued (上傳時間) 21-Feb-2014 10:57:08 (UTC+8)-
dc.identifier.uri (URI) http://nccur.lib.nccu.edu.tw/handle/140.119/64062-
dc.description.abstract (摘要) Many studies have been conducted over the past several years evaluating the integrated use of statistical process control (SPC) and engineering process control (EPC). The majority of these studies reported that combining SPC with EPC outperforms the use of only SPC or EPC. Basically, the former aims to rapidly detect assignable causes and time points for abnormalities that take place during process; and the latter is a method in which input variables are adjusted against process outputs through a feedback control mechanism. Although combining SPC with EPC can effectively detect time points when abnormalities occur during process, their combination can also cause an increased occurrence of false alarms when autocorrelation is present in the process. In this study, to increase the accuracy of process disturbance identification, we propose the integration of spatiotemporal independent component analysis (stICA) with the classification and regression tree (CART) approach to improve our capability to identify process disturbances and recognize shifts in the correlated process parameters. The integration of the CART methodology results in the development of decision rules that can provide valuable information related to the impact of variation in process variable values. These decision rules can provide an increased understanding of process behavior and useful information for process control. For comparison, the integration of traditional principle component analysis (PCA) with CART (called PCA-CART), ICA with CART (called ICA-CART) and cumulative sum chart approaches were applied to evaluate the identification capability of the proposed approach. As the results reveal, the proposed approach is more effective for monitoring correlated process.en_US
dc.format.extent 508703 bytes-
dc.format.mimetype application/pdf-
dc.language.iso en_US-
dc.relation (關聯) Neural Computing & Applications, 19(5), 644-689en_US
dc.source.uri (資料來源) http://link.springer.com/article/10.1007%2Fs00521-009-0324-5en_US
dc.subject (關鍵詞) Process disturbance;Statistical process control;Engineering process control;Spatiotemporal independent component analysis;Classification and regression treeen_US
dc.title (題名) Process disturbance identification through integration of spatiotemporal ICA and CART approachen_US
dc.type (資料類型) articleen
dc.identifier.doi (DOI) 10.1007/s00521-009-0324-5en_US
dc.doi.uri (DOI) http://dx.doi.org/10.1007/s00521-009-0324-5en_US