FURTHER APPLICATIONS OF DYNAMIC DATA SYSTEM (DDS) WITH APPLICATIONS TO MANUFACTURING PROCESSES.

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Abstract

The Dynamic Data System (DDS) as a new modeling approach has been used to analyze the manufacturing system's performance. Three applications of DDS approach are illustrated including identification and analysis of machine tool system dynamics under actual working conditions, analysis of grinding dynamics, and sheet metal surface characterization. It is shown that the DDS methodology has a potential to better understand the complicated manufacturing systems as compared with the prevailing system analysis techniques.

Original languageEnglish (US)
JournalTechnical Paper - Society of Manufacturing Engineers. MS
Issue numberMS79-17
StatePublished - 1979
Externally publishedYes

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Sheet metal
Machine tools
Dynamical systems
Systems analysis

ASJC Scopus subject areas

  • Industrial and Manufacturing Engineering

Cite this

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title = "FURTHER APPLICATIONS OF DYNAMIC DATA SYSTEM (DDS) WITH APPLICATIONS TO MANUFACTURING PROCESSES.",
abstract = "The Dynamic Data System (DDS) as a new modeling approach has been used to analyze the manufacturing system's performance. Three applications of DDS approach are illustrated including identification and analysis of machine tool system dynamics under actual working conditions, analysis of grinding dynamics, and sheet metal surface characterization. It is shown that the DDS methodology has a potential to better understand the complicated manufacturing systems as compared with the prevailing system analysis techniques.",
author = "Kapoor, {Shiv Gopal} and Wu, {S. M.}",
year = "1979",
language = "English (US)",
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publisher = "Society of Manufacturing Engineers",
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AB - The Dynamic Data System (DDS) as a new modeling approach has been used to analyze the manufacturing system's performance. Three applications of DDS approach are illustrated including identification and analysis of machine tool system dynamics under actual working conditions, analysis of grinding dynamics, and sheet metal surface characterization. It is shown that the DDS methodology has a potential to better understand the complicated manufacturing systems as compared with the prevailing system analysis techniques.

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