Control of 2D scalar conservation laws in the presence of shocks
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2016Metadata
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Lecaros Lira, Rodrigo
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Control of 2D scalar conservation laws in the presence of shocks
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Abstract
We analyze a model optimal control problem for a 2D scalar conservation
law: The so-called inverse design problem, the goal being to identify
the initial datum leading to a given nal time con guration. The presence
of shocks is an impediment for classical methods, based on linearization, to
be directly applied. We develop an alternating descent method that exploits
the generalized linearization that takes into account both the sensitivity of
the shock location and of the smooth components of solutions. A numerical
implementation is proposed using splitting and nite di erences. The descent
method we propose is of alternating nature and combines variations taking
account of the shock location and those that take care of the smooth components
of the solution. The e ciency of the method is illustrated by numerical
experiments.
General note
Artículo de publicación ISI
Patrocinador
Basal-CMM project
PFB 03
European Research Council Executive Agency
NUMERIWAVES/FP7-246775
EOARD-AFOSR
FA9550-14-1-0214
BERC program of the Basque Government
PI2010-04
MINECO
MTM2011-29360-C02-00
SEV-2013-0323
Identifier
URI: https://repositorio.uchile.cl/handle/2250/139207
DOI: DOI: 10.1090/mcom/3015
ISSN: 0025-5718
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Mathematics of Computation Volumen: 85 Número: 299 Páginas: 1183-1224 (2016)
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