A key parameter analysis-and-selection system "eProcessKey"

Chi An Kao, Chih Hsuan Cheng, Fan-Tien Cheng

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

In general, most engineers merely rely on the design of experiments (DOE) or their own process experiences in one of the machines with the same type to maintain the capacity of the production line and all of those machines of that same type. However, in this case, they cannot fully understand and control the whole process effects of those same-type machines, because the result of DOE can only represents a small part of the whole parameters. Besides, it merely reflects the condition of the specific machine at that moment. The time-varying effect and status between the different machines of the same type are the thorny problems in the production line, and these will result in variation of the product quality. To comprehend and control the time-varying effect and status of each single machine is usually a difficult and costly task.

Original languageEnglish
Title of host publication2012 e-Manufacturing and Design Collaboration Symposium, eMDC 2012
DOIs
Publication statusPublished - 2012 Dec 20
Event2012 e-Manufacturing and Design Collaboration Symposium, eMDC 2012 - Hsinchu, Taiwan
Duration: 2012 Sep 42012 Sep 4

Publication series

Name2012 e-Manufacturing and Design Collaboration Symposium, eMDC 2012

Other

Other2012 e-Manufacturing and Design Collaboration Symposium, eMDC 2012
CountryTaiwan
CityHsinchu
Period12-09-0412-09-04

All Science Journal Classification (ASJC) codes

  • Computer Graphics and Computer-Aided Design
  • Computer Vision and Pattern Recognition
  • Industrial and Manufacturing Engineering

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  • Cite this

    Kao, C. A., Cheng, C. H., & Cheng, F-T. (2012). A key parameter analysis-and-selection system "eProcessKey". In 2012 e-Manufacturing and Design Collaboration Symposium, eMDC 2012 [6338423] (2012 e-Manufacturing and Design Collaboration Symposium, eMDC 2012). https://doi.org/10.1109/eMDC.2012.6338423