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Marius Tucsnak
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- affiliation: University of Lorraine, Nancy, France
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2020 – today
- 2024
- [j25]René Hosfeld, Birgit Jacob, Felix L. Schwenninger, Marius Tucsnak:
Input-to-State Stability for Bilinear Feedback Systems. SIAM J. Control. Optim. 62(3): 1369-1389 (2024) - 2023
- [j24]Sorin Micu, Ionel Roventa, Marius Tucsnak:
Time optimal controls and bang-bang property for systems describing plate vibrations. Syst. Control. Lett. 182: 105670 (2023) - 2022
- [j23]Shantanu Singh, George Weiss, Marius Tucsnak:
A class of incrementally scattering-passive nonlinear systems. Autom. 142: 110369 (2022) - 2021
- [c6]Jorge San Martín, Takéo Takahashi, Marius Tucsnak:
Input to state stability of the Kermack-Mckendrick age structured epidemic model. CDC 2021: 2590-2594 - [c5]Shantanu Singh, George Weiss, Marius Tucsnak:
Abstract nonlinear control systems. CDC 2021: 6181-6187 - 2020
- [j22]Pei Su, Marius Tucsnak, George Weiss:
Stabilizability properties of a linearized water waves system. Syst. Control. Lett. 139: 104672 (2020)
2010 – 2019
- 2019
- [j21]Marius Tucsnak, Julie Valein, Chi-Ting Wu:
Finite dimensional approximations for a class of infinite dimensional time optimal control problems. Int. J. Control 92(1): 132-144 (2019) - [j20]Debayan Maity, Jorge San Martín, Takéo Takahashi, Marius Tucsnak:
Analysis of a Simplified Model of Rigid Structure Floating in a Viscous Fluid. J. Nonlinear Sci. 29(5): 1975-2020 (2019) - 2018
- [j19]Nicolas Hegoburu, Pierre Magal, Marius Tucsnak:
Controllability with Positivity Constraints of the Lotka-McKendrick System. SIAM J. Control. Optim. 56(2): 723-750 (2018) - 2017
- [j18]Scott W. Hansen, Marius Tucsnak:
Some new applications of Russell's principle to infinite dimensional vibrating systems. Annu. Rev. Control. 44: 184-198 (2017) - [c4]Marius Tucsnak:
Some controllability and detectability results in population dynamics with age structuring. CDC 2017: 647-651 - 2016
- [j17]Marius Tucsnak, Gensgsheng Wang, Chi-Ting Wu:
Perturbations of Time Optimal Control Problems for a Class of Abstract Parabolic Systems. SIAM J. Control. Optim. 54(6): 2965-2991 (2016) - 2015
- [j16]Marius Tucsnak, George Weiss:
From exact observability to identification of singular sources. Math. Control. Signals Syst. 27(1): 1-21 (2015) - [c3]Marius Tucsnak, Julie Valein, Chi-Ting Wu:
Numerical approximation of some time optimal control problems. ECC 2015: 1339-1342 - 2014
- [j15]Marius Tucsnak, George Weiss:
Well-posed systems - The LTI case and beyond. Autom. 50(7): 1757-1779 (2014) - [j14]Jamal Daafouz, Marius Tucsnak, Julie Valein:
Nonlinear control of a coupled PDE/ODE system modeling a switched power converter with a transmission line. Syst. Control. Lett. 70: 92-99 (2014) - 2013
- [j13]Jérôme Lohéac, Marius Tucsnak:
Maximum Principle and Bang-Bang Property of Time Optimal Controls for Schrödinger-Type Systems. SIAM J. Control. Optim. 51(5): 4016-4038 (2013) - 2012
- [c2]Jamal Daafouz, Marius Tucsnak, Julie Valein:
Wellposedness and stabilization of a class of infinite dimensional bilinear control systems. CDC 2012: 1560-1565 - 2011
- [j12]Martin Gugat, Marius Tucsnak:
An example for the switching delay feedback stabilization of an infinite dimensional system: The boundary stabilization of a string. Syst. Control. Lett. 60(4): 226-233 (2011) - [j11]Nicolae Cîndea, Sorin Micu, Marius Tucsnak:
An Approximation Method for Exact Controls of Vibrating Systems. SIAM J. Control. Optim. 49(3): 1283-1305 (2011) - [i1]Falk M. Hante, Mario Sigalotti, Marius Tucsnak:
On conditions for asymptotic stability of dissipative infinite-dimensional systems with intermittent damping. CoRR abs/1108.4327 (2011) - 2010
- [j10]Karim Ramdani, Marius Tucsnak, George Weiss:
Recovering the initial state of an infinite-dimensional system using observers. Autom. 46(10): 1616-1625 (2010)
2000 – 2009
- 2009
- [j9]Nicolae Cîndea, Marius Tucsnak:
Local exact controllability for Berger plate equation. Math. Control. Signals Syst. 21(2): 93-110 (2009) - [j8]Marius Tucsnak, M. Vanninathan:
Locally distributed control for a model of fluid-structure interaction. Syst. Control. Lett. 58(8): 547-552 (2009) - [j7]Carlos J. S. Alves, Ana Leonor Silvestre, Takéo Takahashi, Marius Tucsnak:
Solving Inverse Source Problems Using Observability. Applications to the Euler--Bernoulli Plate Equation. SIAM J. Control. Optim. 48(3): 1632-1659 (2009) - 2005
- [j6]Jorge San Martín, Jean-François Scheid, Takéo Takahashi, Marius Tucsnak:
Convergence of the Lagrange-Galerkin Method for the Equations Modelling the Motion of a Fluid-Rigid System. SIAM J. Numer. Anal. 43(4): 1536-1571 (2005) - 2003
- [j5]Rogelio Benavides Guzmán, Marius Tucsnak:
Energy decay estimates for the damped plate equation with a local degenerated dissipation. Syst. Control. Lett. 48(3-4): 191-197 (2003) - [j4]Marius Tucsnak, George Weiss:
How to Get a Conservative Well-Posed Linear System Out of Thin Air. Part II. Controllability and Stability. SIAM J. Control. Optim. 42(3): 907-935 (2003) - [c1]George Weiss, Marius Tucsnak:
Equivalent conditions for exponential stability for a special class of conservative linear systems. ECC 2003: 98-102 - 2002
- [j3]Kais Ammari, Zhuangyi Liu, Marius Tucsnak:
Decay Rates for a Beam with Pointwise Force and Moment Feedback. Math. Control. Signals Syst. 15(3): 229-255 (2002) - 2000
- [j2]Marius Tucsnak, George Weiss:
Simultaneous Exact Controllability and Some Applications. SIAM J. Control. Optim. 38(5): 1408-1427 (2000) - [j1]Kais Ammari, Marius Tucsnak:
Stabilization of Bernoulli--Euler Beams by Means of a Pointwise Feedback Force. SIAM J. Control. Optim. 39(4): 1160-1181 (2000)
Coauthor Index
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last updated on 2024-10-07 22:08 CEST by the dblp team
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