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A General Method for Estimating Dynamic Parameters of Spatial Mechanisms
Authors:Shome  Siddhartha S  Beale  David G  Wang  Deming
Institution:(1) Department of Mechanical Engineering, Auburn University, Auburn, AL, 36849-5341, U.S.A.
Abstract:Dynamic equations of motion require a large number of parameters for each element of the system. These can include for each part their mass, location of center of mass, moment of inertia, spring stiffnesses and damping coefficients. This paper presents a technique for estimating these parameters in spatial mechanisms using any joint type, based on measurements of displacements, velocities and accelerations and of external forces and torques, for the purpose of building accurate multibody models of mechanical systems. A form of the equations of spatial motion is derived, which is linear in the dynamic parameters and based on multibody simulation code methodologies. Singular value decomposition is used to find the lsquoessential parameter setrsquo, and lsquominimum parameter setrsquo. It is shown that a simulation of a four-bar mechanism (with spherical, universal, and revolute joints) and based on the estimated parameters gives accurate response.
Keywords:Dynamic parameters  multibody dynamics  four-bar mechanism  simulation
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