Time discretization of vibro‐impact
Author(s) -
Lætitia Paoli
Publication year - 2001
Publication title -
philosophical transactions of the royal society a mathematical physical and engineering sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.074
H-Index - 169
eISSN - 1471-2962
pISSN - 1364-503X
DOI - 10.1098/rsta.2001.0858
Subject(s) - discretization , differential inclusion , equivalence (formal languages) , mathematics , constraint (computer aided design) , measure (data warehouse) , degrees of freedom (physics and chemistry) , ball (mathematics) , mathematical optimization , computer science , mathematical analysis , geometry , physics , discrete mathematics , quantum mechanics , database
International audienceWe consider vibro-impact problems, i.e. mechanical systems with a finite number of degrees of freedom submitted to perfect unilateral constraints. The dynamics is basically described by a second-order measure differential inclusion for the unknown position completed with a constitutive impact law. Another formulation of the problem as a frictionless sweeping process is possible: the unknown velocity belongs to an appropriate functional space and satisfies a first order measure differential inclusion. The equivalence of these two formulations is studied. They lead to time-discretiza-tions written in terms of positions or in terms of velocities, respectively. We present these different schemes and we compare them on the simple test-problem of a bouncing ball. We recall the convergence results in the single constraint case. Moreover, an example of implementation of the scheme derived from the basic description of the dynamics is presented. Finally, in the multi-constraint case, we point out some theoretical and computational difficulties
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