DocumentCode
2513261
Title
FlexSim simulation environment
Author
Nordgren, William B.
Author_Institution
Flexim Software Products, Inc., Orem, UT, USA
Volume
1
fYear
2003
fDate
7-10 Dec. 2003
Firstpage
197
Abstract
Flexsim is an object-oriented software environment used to develop, model, simulate, visualize, and monitor dynamic-flow process activities and systems. Flexsim is a complete suite of development tools to develop and compile simulation applications. There are 3 levels of use within the Flexsim environment: 1) The Flexsim Compiler, 2) The Flexsim Developer, and 3) Flexsim Application products. The Flexsim environment is completely integrated with the C++ compiler and uses flexscript (a C++ library that is pre-compiled) or C++ directly. All animation is OpenGL and boasts incredible virtual reality animation. Animation can be shown in tree view, 2D, 3D, and virtual reality. All views can be shown concurrently during the model development or run phase. Flexsim has been used to model manufacturing, warehousing, material handling processes, semiconductor manufacturing, marine container terminal processes, and shared access storage network (SANS) simulation. This paper briefly describes the uses and benefits of the Flexsim Simulation Environment.
Keywords
computer animation; digital simulation; object-oriented programming; program compilers; software tools; virtual reality; C++ compiler; Flexsim Application; Flexsim Compiler; Flexsim Developer; Flexsim simulation environment; OpenGL; development tools; dynamic flow process; flexscript; marine container terminal processes; material handling processes; object-oriented software environment; semiconductor manufacturing; shared access storage network simulation; tree view; virtual reality animation; warehousing; Animation; Application software; Manufacturing processes; Material storage; Monitoring; Object oriented modeling; Semiconductor device manufacture; Virtual manufacturing; Virtual reality; Visualization;
fLanguage
English
Publisher
ieee
Conference_Titel
Simulation Conference, 2003. Proceedings of the 2003 Winter
Print_ISBN
0-7803-8131-9
Type
conf
DOI
10.1109/WSC.2003.1261424
Filename
1261424
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