Recursive modular modelling methodology for lumped-parameter dynamic systems

Author:

Orsino Renato Maia MatarazzoORCID

Abstract

This paper proposes a novel approach to the modelling of lumped-parameter dynamic systems, based on representing them by hierarchies of mathematical models of increasing complexity instead of a single (complex) model. Exploring the multilevel modularity that these systems typically exhibit, a general recursive modelling methodology is proposed, in order to conciliate the use of the already existing modelling techniques. The general algorithm is based on a fundamental theorem that states the conditions for computing projection operators recursively. Three procedures for these computations are discussed: orthonormalization, use of orthogonal complements and use of generalized inverses. The novel methodology is also applied for the development of a recursive algorithm based on the Udwadia–Kalaba equation, which proves to be identical to the one of a Kalman filter for estimating the state of a static process, given a sequence of noiseless measurements representing the constraints that must be satisfied by the system.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference21 articles.

1. Orsino RMM. 2016 A contribution on modelling methodologies for multibody systems. PhD thesis São Paulo Brazil: University of São Paulo. See http://www.teses.usp.br/teses/disponiveis/3/3151/tde-22062016-160724/en.php.

2. A contribution on the modular modelling of multibody systems

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