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Stabilization by sparse controls for a class of semilinear parabolic equations

Abstract: Stabilization problems for parabolic equations with polynomial nonlinearities are investigated in the context of an optimal control formulation with a sparsity enhancing cost functional. This formulation allows that the optimal control completely shuts down once the trajectory is sufficiently close to a stable steady state. Such a property is not present for commonly chosen control mechanisms. To establish these results it is necessary to develop a function space framework for a class of optimal control problems posed on infinite time horizons, which is otherwise not available.

 Authorship: Casas E., Kunisch K.,

 Fuente: SIAM Journal on Control and Optimization, 2017, 55 (1), 512-532

 Publisher: Society for Industrial and Applied Mathematics

 Publication date: 01/02/2017

 No. of pages: 20

 Publication type: Article

 DOI: 10.1137/16M1084298

 ISSN: 0363-0129,1095-7138

 Spanish project: MTM2014-57531-P

Authorship

KUNISCH, KARL