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Article type: Research Article
Authors: Castro, Carlosa; * | Münch, Arnaudb
Affiliations: [a] Departamento de Matemática e Informática Aplicadas a la Ingeniería Civil y Naval, Universidad Politécnica de Madrid, Madrid, 28040, Spain. E-mail: carlos.castro@upm.es | [b] Laboratoire de Mathématiques Blaise Pascal, Université Clermont Auvergne, UMR CNRS 6620, Campus universitaire des Cézeaux, 3, place Vasarely, 63178, Aubière, France. E-mail: arnaud.munch@uca.fr
Correspondence: [*] Corresponding author. E-mail: carlos.castro@upm.es.
Abstract: The Petrowsky type equation yttε+εyxxxxε−yxxε=0, ε>0 encountered in linear beams theory is null controllable through Neumann boundary controls. Due to the boundary layer of size of order ε occurring at the extremities, these boundary controls get singular as ε goes to 0. Using the matched asymptotic method, we describe the boundary layer of the solution yε and derive a rigorous second order asymptotic expansion of the control of minimal weighted L2-norm, with respect to the parameter ε. The weight in the norm is chosen to guarantee the smoothness of the control. In particular, we recover and enrich earlier results due to J.-L. Lions in the eighties showing that the leading term of the expansion is a null Dirichlet control for the limit hyperbolic wave equation. The asymptotic analysis also provides a robust discrete approximation of the control for any ε small enough. Numerical experiments support our study.
Keywords: Singular controllability, boundary layers, asymptotic analysis, numerical experiments
DOI: 10.3233/ASY-201607
Journal: Asymptotic Analysis, vol. 122, no. 1-2, pp. 1-33, 2021
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