Method and system for modeling a mechanical system

Data processing: structural design – modeling – simulation – and em – Simulating nonelectrical device or system – Mechanical

Reexamination Certificate

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C703S001000, C700S098000, C702S033000, C702S041000

Reexamination Certificate

active

07991598

ABSTRACT:
A system and methods are disclosed herein for modeling a mechanical system having body elements movable in at least two dimensions in a graphical modeling environment. The system and methods described herein allow constraints on body elements movable in at least two dimensions in the mechanical system to be generalized and represented by a single block in the graphical modeling environment. The system and methods described herein simplify the modeling of a mechanical system by allowing a user to construct a definition of generalized constraints through a connectivity table. Thus, it is possible to model a mechanical system in a graphical modeling environment with less than all the body elements represented by blocks in a graphical model.

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Rajarishi Sinha, Christiaan J.J. Paredis, Pradeep K. Khosla, “Kinematics Support for Design and Simulation of Mechatronic Systems”, IFIP Conference Proceedings; vol. 207, pp. 183-198, Year of Publication: 2000, ISBN:0-7923-7619-6, 14 pages.
C. J. J. Paredis, A. Diaz-Calderon, R. Sinha, P.K. Khosla, “Composable Models for Simulation-Based Design”, Engineering with Computers (2001), pp. 112-128.
Vei-Chung Liang, Christiaan J.J. Paredis, “A Port Ontology for Automated Model Composition” Proceedings of the 2003 Winter Simulation Conference, pp. 613-622.
Elmqvist, Hilding, et al., “Real-time Simulation of Detailed Automotive Models,”Prodeedings of the 3rd International Modelica Conference, http://www.Modelica.org/Conference2003/papers.shtml (2003).

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