L^p-asymptotic stability analysis of a 1D wave equation with a nonlinear damping
Abstract
This paper is concerned with the asymptotic stability analysis of a one dimensional wave equation with Dirichlet boundary conditions subject to a nonlinear distributed damping with an L p functional framework, p [2, ]. Some well-posedness results are provided together with exponential decay to zero of trajectories, with an estimation of the decay rate. The well-posedness results are proved by considering an appropriate functional of the energy in the desired functional spaces introduced by Haraux in [11]. Asymptotic behavior analysis is based on an attractivity result on a trajectory of an infinite-dimensional linear time-varying system with a special structure, which relies on the introduction of a suitable Lyapunov functional. Note that some of the results of this paper apply for a large class of nonmonotone dampings.
Keywords
Cite
@article{arxiv.1907.11712,
title = {L^p-asymptotic stability analysis of a 1D wave equation with a nonlinear damping},
author = {Yacine Chitour and Swann Marx and Christophe Prieur},
journal= {arXiv preprint arXiv:1907.11712},
year = {2019}
}
Comments
arXiv admin note: text overlap with arXiv:1902.02050