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EFFICIENCY ASSESSMENT OF THE DIRECT INTEGRATION METHOD BY CENTRAL DIFFERENCES (DIMCD)

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SEPTEMBER 2021   -  Volume: 96 -  Pages: 512-519

DOI:

https://doi.org/10.6036/10004

Authors:

GORKA URKULLU MARTIN - IGOR FERNANDEZ DE BUSTOS - ANDER OLABARRIETA - RUBEN ANSOLA

Disciplines:

  • Mechanics (MECANICA DE SOLIDOS )

Downloads:   245

How to cite this paper:  
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Received Date :   16 November 2020

Reviewing Date :   13 January 2021

Accepted Date :   16 March 2021


Key words:
Multibody Dynamics, Central Differences, Null space, Quaternions, Dinámica Multicuerpo, Diferencias Centrales, Subespacio Nulo, Cuaterniones.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

The direct integration method by central differences (DIMCD) is an explicit method of order two for integrating the equations governing the dynamic analysis of multibody systems. So far, development has focused only on verifying the quality of the results. In this paper, it is shown that in addition to providing optimal results, it is also competitive from the point of view of computational efficiency, at least for systems with up to six bodies. For this purpose, an appropriate implementation of the method in a compiled language is presented. In turn, it is shown that the methodology is suitable for modeling in sparse matrices, although the proposed implementation is based on dense matrices. The resulting code is applied to different benchmark examples. Results from various commercial software are also included.

Keywords: Computational efficiency, multibody dynamics, central differences, null space, dense matrices, quaternions

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