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Bond‐graph based substructuring of dynamical systems
10.1002/eqe.450.abs
A bond graph approach to hybrid simulation of dynamical systems using numerical–experimental real‐time substructuring is presented. The bond graph concepts of a virtual junction and a virtual actuator, hitherto used in the context of physical‐model based control, are used to perform the substructuring in an intuitively appealing way. The approach is illustrated by the reworking of a previously‐published example.
The approach is verified experimentally using a bench‐top multiple mass–spring system for the physical substructure and automatically generated real‐time code is used to implement the numerical substructure. Copyright © 2005 John Wiley & Sons, Ltd.
Bond‐graph based substructuring of dynamical systems
10.1002/eqe.450.abs
A bond graph approach to hybrid simulation of dynamical systems using numerical–experimental real‐time substructuring is presented. The bond graph concepts of a virtual junction and a virtual actuator, hitherto used in the context of physical‐model based control, are used to perform the substructuring in an intuitively appealing way. The approach is illustrated by the reworking of a previously‐published example.
The approach is verified experimentally using a bench‐top multiple mass–spring system for the physical substructure and automatically generated real‐time code is used to implement the numerical substructure. Copyright © 2005 John Wiley & Sons, Ltd.
Bond‐graph based substructuring of dynamical systems
Gawthrop, P. J. (author) / Wallace, M. I. (author) / Wagg, D. J. (author)
Earthquake Engineering & Structural Dynamics ; 34 ; 687-703
2005-05-01
17 pages
Article (Journal)
Electronic Resource
English
Bond-graph based substructuring of dynamical systems
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