Feedback stabilization for entropy solutions of a 2x2 hyperbolic system of conservation laws at a junction
Analysis of PDEs
2024-08-01 v1
Abstract
We consider the p-system in Eulerian coordinates on a star-shaped network. Under suitable transmission conditions at the junction and dissipative boundary conditions in the exterior vertices, we show that the entropy solutions of the system are exponentially stabilizable. Our proof extends the strategy by Coron et al. (2017) and is based on a front-tracking algorithm used to construct approximate piecewise constant solutions whose BV norms are controlled through a suitable exponentially-weighted Glimm-type Lyapunov functional.
Keywords
Cite
@article{arxiv.2407.21137,
title = {Feedback stabilization for entropy solutions of a 2x2 hyperbolic system of conservation laws at a junction},
author = {Giuseppe Maria Coclite and Nicola De Nitti and Mauro Garavello and Francesca Marcellini},
journal= {arXiv preprint arXiv:2407.21137},
year = {2024}
}