
Bilinear local controllability to the trajectories of the Fokker-Planck equation with a localized control
Duprez, Michel; Lissy, Pierre (2022), Bilinear local controllability to the trajectories of the Fokker-Planck equation with a localized control, Annales de l'Institut Fourier, 72, 4, p. 1621-1659. 10.5802/aif.3501/
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Type
Article accepté pour publication ou publiéDate
2022Journal name
Annales de l'Institut FourierVolume
72Number
4Publisher
Université Grenoble Alpes
Pages
1621-1659
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Show full item recordAuthor(s)
Duprez, MichelLaboratoire des sciences de l'ingénieur, de l'informatique et de l'imagerie [ICube]
Lissy, Pierre
CEntre de REcherches en MAthématiques de la DEcision [CEREMADE]
Abstract (EN)
This work is devoted to the control of the Fokker-Planck equation, posed on a smooth bounded domain of R^d, with a localized drift force. We prove that this equation is locally controllable to regular nonzero trajectories. Moreover, under some conditions, we explain how to reduce the number of controls around the reference control. The results are obtained thanks to a standard linearization method and the fictitious control method. The main novelties are twofold. First, the algebraic solvability is performed and used directly on the adjoint problem. We then prove a new Carleman inequality for the heat equation with a space-time varying first-order term: the right-hand side is the gradient of the solution localized on an open subset. We finally give an example of regular trajectory around which the Fokker-Planck equation is not controllable with a reduced number of controls, to highlight that our conditions are relevant.Subjects / Keywords
Carleman estimates; Parabolic equations; Algebraic solvability; Fictitious control method; ControllabilityRelated items
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