Optimal control of a singular PDE modeling transient MEMS with control or state constraints |
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Authors: | Christian Clason Barbara Kaltenbacher |
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Affiliation: | 1. Institute for Mathematics and Scientific Computing, Karl-Franzens-Universität Graz, Heinrichstr. 36, 8010 Graz, Austria;2. Institute of Mathematics, Alpen-Adria-Universität Klagenfurt, Universitätsstr. 65–67, 9020 Klagenfurt, Austria |
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Abstract: | ![]() A particular feature of certain microelectromechanical systems (MEMS) is the appearance of a so-called “pull-in” instability, corresponding to a singularity in the underlying PDE model. We here consider a transient MEMS model and its optimal control via the dielectric properties of the membrane and/or the applied voltage. In contrast to the static case, the control problem suffers from low dimensionality of the control compared to the state and hence requires different techniques for establishing first order optimality conditions. For this purpose, we here use a relaxation approach combined with a localization technique. |
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Keywords: | Optimal control of PDEs Control constraints State constraints Singular PDEs Microelectromechanical systems (MEMS) |
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