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Hybrid equations of motion for flexible multibody systems using quasicoordinates

L. Meirovitch, Timothy J. Stemple

Year
1995
Citations
85

Abstract

A variety of engineering systems, such as automobiles, aircraft, rotorcraft, robots, spacecraft, etc., can be modeled as flexible multibody systems. The individual flexible bodies are in general characterized by distributed parameters. In most earlier investigations they were approximated by some spatial discretization procedure, such as the classical Rayleigh-Ritz method or the finite element method. This paper presents a mathematical formulation for distributed-parameter multibody systems consisting of a set of hybrid (ordinary and partial) differential equations of motion in terms of quasi-coordinates. Moreover, the equations for the elastic motions include rotatory inertia and shear deformation effects. The hybrid set is cast in state form, thus making it suitable for control design.

Keywords

Multibody systemDiscretizationEquations of motionFinite element methodRayleigh–Ritz methodOrdinary differential equationInertiaComputer sciencePartial differential equationGeneralized coordinates

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