| Taylor enterprise dynamics |
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Winter Simulation Conference
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Proceedings of the 33nd conference on Winter simulation
table of contents
Arlington, Virginia
TUTORIAL SESSION: Software/modelware tutorials
table of contents
Pages: 269 - 271
Year of Publication: 2001
ISBN:0-7803-7309-X
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IEEE Computer Society
Washington, DC, USA
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Downloads (6 Weeks): 0, Downloads (12 Months): 18, Citation Count: 2
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ABSTRACT
Taylor Enterprise Dynamics (Taylor ED) is an object-oriented software system used to model, simulate, visualize, and monitor dynamic-flow process activities and systems. Atoms are Taylor ED's smart objects and model building resources. In addition to Taylor ED's standard atom libraries, users can create new atoms themselves. Taylor ED's object-oriented architecture provides users with the ability to enhance and increase the functionality of the Taylor ED software system. It also provides simulation experts with a platform on which to create new simulation software programs for specific industries or for specific applications. Historically, Taylor ED has been used to model manufacturing, warehousing, and material handling processes. The software is being used more and more to model, simulate, and visualize service and data flow processes. In addition to these traditional uses, Taylor ED is also used to monitor flow processes in real-time. This paper briefly describes the uses and benefits of Taylor ED.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
CITED BY 2
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Matthias Fischer , Bengt Mueck , Kiran Mahajan , Michael Kortenjan , Christoph Laroque , Wilhelm Dangelmaier, Multi-user support and motion planning of humans and humans driven vehicles in interactive 3D material flow simulations, Proceedings of the 37th conference on Winter simulation, December 04-07, 2005, Orlando, Florida
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Wilhelm Dangelmaier , Matthias Fischer , Jürgen Gausemeier , Michael Grafe , Carsten Matysczok , Bengt Mueck, Virtual and augmented reality support for discrete manufacturing system simulation, Computers in Industry, v.56 n.4, p.371-383, May 2005
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