2007International Journal of Technology ManagementRequires access

Formation of a generic technique for manufacturing systems monitoring

C.S. Tang, C. Y. Chan, Kai Leung Yung

Open publisher page 1 citations

Abstract

To enhance resources utilisations, dispersed manufacturing systems are getting popular presently. With such systems, the connections among worldwide-dispersed activities are often made by telephones, emails and facsimiles, etc. to overcome some geographical barriers. It is very clear that knowledge of fabrication status is very important to a world-class manufacturer because fluctuations in fabrication processes can directly affect other operations, as most operations are interknitted in someway. Traditionally, computer integrated manufacturing (CIM) techniques have been applied; however, the complicated hardware/software integrations and signal conditioning requirements digest a significant amount of resources. The objective of this research is to develop a new methodology, which needs little configurations, by making use of simple counting devices attached at transition points along a fabrication line to count the number of entities that have passed. With the help of the formulated mathematical model, both the quantitative and the qualitative matters in a manufacturing system can be monitored. A problematic location can then be identified accordingly.

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What this paper is about

To enhance resources utilisations, dispersed manufacturing systems are getting popular presently. With such systems, the connections among worldwide-dispersed activities are often made by telephones, emails and facsimiles, etc. to overcome some geographical barriers. It is very clear that knowledge of fabrication status is very important to a world-class manufacturer because fluctuations in fabrication processes can directly affect other operations, as most operations are interknitted in someway. Traditionally, computer integrated manufacturing (CIM) techniques have been applied; however, the complicated hardware/software integrations and signal conditioning requirements digest a significant amount of resources. The objective of this research is to develop a new methodology, which needs little configurations, by making use of simple counting devices attached at transition points along a fabrication line to count the number of entities that have passed. With the help of the formulated mathematical model, both the quantitative and the qualitative matters in a manufacturing system can be monitored. A problematic location can then be identified accordingly.

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Available abstract

To enhance resources utilisations, dispersed manufacturing systems are getting popular presently. With such systems, the connections among worldwide-dispersed activities are often made by telephones, emails and facsimiles, etc. to overcome some geographical barriers. It is very clear that knowledge of fabrication status is very important to a world-class manufacturer because fluctuations in fabrication processes can directly affect other operations, as most operations are interknitted in someway. Traditionally, computer integrated manufacturing (CIM) techniques have been applied; however, the complicated hardware/software integrations and signal conditioning requirements digest a significant amount of resources. The objective of this research is to develop a new methodology, which needs little configurations, by making use of simple counting devices attached at transition points along a fabrication line to count the number of entities that have passed. With the help of the formulated mathematical model, both the quantitative and the qualitative matters in a manufacturing system can be monitored. A problematic location can then be identified accordingly.

Key concepts: Computer science, Class (philosophy), Computer-integrated manufacturing, Software, Manufacturing engineering, Industrial engineering, Systems engineering, Engineering

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