Work address:
University of Bordeaux (Engineering and digital sciences department)
IMS-lab, CNRS UMR 5218
351 Cours de la Libération, 33405 Talence, France
Bio sketch:
- I received a System’s Engineering Diploma degree from the University Politehnica of Bucharest, Romania, in 2008. For my final year project, which I prepared during an Erasmus exchange at Grenoble INP, France, in 2008, I developed an interactive software for robust digital controller design (see MIRCOD) based on the theoretical work of Ioan Doré Landau, who supervised my internship at GIPSA-lab. I later continued this project by including two new modules for system identification and controller order reduction, based also on the theoretical work of Ioan Doré Landau. This software has been commercialized for a period by Adaptech (no longer in activity) and TechTeam.
- I joined the University Politehnica of Bucharest as Assistant Professor in 2008 and begun my PhD research one year later in a collaboration with the GIPSA-lab, University of Grenoble, France. My PhD research, which I defended in 2011 in Bucharest and in 2012 in Grenoble, focused on “Robust Design and Tuning of Active Vibration Control Systems” (pdf, 8.9 MB). For this research, I received the best PhD award from the GdR MACS and the best PhD in Automatic Control by the EEA Club (April 2013) (see nomination in pdf).
- After a 16 month PostDoc at the Fluminance team of Inria Rennes – Bretagne Atlantique, I joined, as Associate Professor, the Automatic Control group of IMS-lab, University of Bordeaux, in 2014.
- I co-authored, with I.D. Landau, A. Castellanos, and A. Constantinescu, the book “Adaptive and Robust Active Vibration Control”, Springer, 2017 (see list of publications).
- My personal webpage is available at https://tudor-bogdan.airimitoaie.name/
- My publications list can also be checked at https://cv.hal.science/tudor-bogdanairimitoaie
- My Google Scholar page is here
Open positions:
- I’m always interested to work with highly qualified and motivated students. Please contact me with CV and Letter of motivation to discuss possible collaborations.
Past positions:
- A PostDoc position with a duration of 1 to 2 years is available, see description here.
- A 6 months Internship position (see here for more details).
Research topics:
- My main research interests are focused on the fields of (i) active noise and vibration control using adaptive regulation techniques and (ii) flat dynamic systems. Practical applications include wind energy systems, predictive maintenance, convertible UAV (combinations of VTOLs and conventional aircraft designs), and active noise and vibration control.
Projects:
- (2023-) Co-investigator and co-supervisor of 2 PhD theses and 1 PostDoc researcher within the KiWin project led by Beyond the Sea, which aims at building a kite based solution for maritime transportation. Together with colleagues from the IMS-lab, we will be working on the control, guidance, and supervision of the kite system.
- (2018-2022) Co-investigator and co-supervisor of a PhD thesis in a research grant in collaboration with the Stellantis group on the modelling and control of powertrains using robust and predictive methods.
- (2016-2019) Principal investigator for the French research agency (ANR) funded young researchers (JCJC) project MICA which deals with the problem of fault detection and isolation and fault-tolerant control for convertible UAVs (please visit our website for more information).
PhD supervision
- Default identification and modelling for the railway infrastructure maintenance
Aziz Bounouh, University of Bordeaux, France, in progress. - Nonlinear control and supervision of a tethered kite for vessel propelling
Monika Pasquali, University of Bordeaux, France, in progress. - Modelling and robust control of a tethered kite for vessel propelling
Enso Ndreko, University of Bordeaux, France, in progress. - Identification and decision by coupling deep learning methods and knowledge models for predictive maintenance
Mathias Lecroart, University of Bordeaux, France, in progress. - Development of optimal anticipative control laws for powertrain
Evgeny Shulga, University of Bordeaux, France, defended on the 9th of September 2022. - Development of methods for the characterization of flat integer or fractional systems: application to path planning and fault detection of thermal systems
Rim Rammal, University of Bordeaux, France, defended on the 15th of January 2021 (tel). - Active noise control in the presence of uncertain and time-varying disturbances
Raúl Melendez Marquez, University of Grenoble, France, defended on the 23rd of May 2019 (tel). - Development of the CRONE control with robust anticipative effect
Asma Achnib, University of Bordeaux, France, defended on the 25th of April 2019 (tel).
Other scientific activities
- Associate editor of IEEE Control Systems Letters (L-CSS) starting January 1st, 2025.
- Member of the National Organizing Committee of the 12th Conference on Fractional Differentiation and its Application, Bordeaux, France, 9-12 July 2024.
- Member of the International Technical Committee of the 12th International Conference on Control, Mechatronics and Automation, London, UK, 11-13 November 2024.
- Member of the IFAC’s Technical Committee on Adaptive and Learning Systems.
- Member of the IEEE CSS’s Technical Committee on System Identification and Adaptive Control (TCSIAC).
- Associate editor (Conference Editorial Board member) of IEEE Control Systems Society, which organises the Conference on Decision and Control (CDC) and the American Control Conference (ACC).
- Associate editor (Conference Editorial Board member) of European Control Association (EUCA), which organises the annual European Control Conference (ECC).
- Other conference associate editor activities: ALCOS 2022.
- Robert-Houdin award at the French seminar on Experimental Vibratory Analysis (18-20 November 2014, Blois, France) for the paper: Landau I.D., AirimiČ›oaie T.-B., Castellanos-Silva A., Alma M., Adaptive active vibration isolation – A control perspective (link 1 and link 2).
- Co-organiser of a Benchmark on Adaptive Regulation and an invited session at ECC’13.
Article (7)
Accelerating recursive least squares adaptation/learning algorithms using a dynamic adaptation gain Auteur(s): Tudor-Bogdan Airimitoaie, Ioan Doré Landau, Bernard Vau, Gabriel Buche Année de publication: 2025 Journal: Automatica DOI: 10.1016/j.automatica.2025.112297 Lien HAL: https://hal.science/hal-04885000v1 Development of a high accuracy and stability test bench for ageing measurement of 16 nm FinFETs based FPGA Auteur(s): Justin Sobas, Tudor-Bogdan Airimitoaie, François Marc Année de publication: 2024 Journal: Microelectronics Reliability DOI: 10.1016/j.microrel.2022.114698 Lien HAL: https://hal.science/hal-04017664v1 Improving performance of adaptive feedforward noise attenuators using a dynamic adaptation gain Auteur(s): Ioan Doré Landau, Bernard Vau, Tudor-Bogdan Airimitoaie, Gabriel Buche Année de publication: 2023 Journal: Journal of Sound and Vibration DOI: 10.1016/j.jsv.2023.117790 Lien HAL: https://hal.science/hal-04045279v2 On a general structure for adaptation/learning algorithms - stability and performance issues Auteur(s): Ioan Doré Landau, Tudor-Bogdan Airimitoaie, Bernard Vau, Gabriel Buche Année de publication: 2023 Journal: Automatica DOI: 10.1016/j.automatica.2023.111193 Lien HAL: https://hal.science/hal-04045239v1 Association of a fractional order controller with an optimal model-based approach for a robust, safe and high performing control of nonlinear systems Auteur(s): Evgeny Shulga, Patrick Lanusse, Tudor-Bogdan Airimitoaie, Stéphane Maurel Année de publication: 2023 Journal: Fractional Calculus and Applied Analysis DOI: 10.1007/s13540-023-00204-w Lien HAL: https://hal.science/hal-04238423v1 Robust Design of an Anticipative Feedforward-feedback Controller for MIMO Systems Auteur(s): Asma Achnib, Tudor-Bogdan Airimitoaie, Patrick Lanusse Année de publication: 2022 Journal: International Journal of Control, Automation and Systems DOI: 10.1007/s12555-021-0034-z Lien HAL: https://hal.science/hal-03605660v1 Nonlinear Three-Tank System Fault Detection and Isolation Using Differential Flatness Auteur(s): Rim Rammal, Tudor-Bogdan Airimitoaie, Pierre Melchior, Franck Cazaurang Année de publication: 2022 Journal: IFAC Journal of Systems and Control DOI: 10.1016/j.ifacsc.2022.100197 Lien HAL: https://hal.science/hal-03601378v1Patents (2)
Système de contrôle multivariable et anticipatif de système dynamique pour véhicules automobiles, procédé et programme sur la base d’un tel système de contrôle Auteur(s): Evgeny Shulga, Stéphane Maurel, Patrick Lanusse, Tudor-Bogdan Airimitoaie Année de publication: 2025 Journal: DOI: Lien HAL: https://hal.science/hal-04918931v1 Système de contrôle de système dynamique pour véhicules automobiles, procédé et programme sur la base d’un tel système de contrôle Auteur(s): Evgeny Shulga, Stéphane Maurel, Patrick Lanusse, Tudor-Bogdan Airimitoaie Année de publication: 2025 Journal: DOI: Lien HAL: https://hal.science/hal-04918952v1Conference proceedings (16)
Rigid Body Modeling and Dynamic Flight Control of a Tethered Kite Auteur(s): Enso Ndreko, Monika Pasquali, Tudor-Bogdan Airimitoaie, Christophe Farges, Patrick Lanusse Année de publication: 2025 Journal: DOI: 10.1109/ICCMA63715.2024.10843908 Lien HAL: https://hal.science/hal-04930312v1 Optimal flight trajectories of a tethered kite for ship propulsion under variable wind conditions Auteur(s): Monika Pasquali, Enso Ndreko, Tudor-Bogdan Airimitoaie, Christophe Farges, Patrick Lanusse Année de publication: 2025 Journal: DOI: 10.1109/ICCMA63715.2024.10843812 Lien HAL: https://hal.science/hal-04939796v1 Flat dynamic model analysis of a delta-wing convertible aircraft Auteur(s): Monika Pasquali, Tudor-Bogdan Airimitoaie, Patrick Lanusse Année de publication: 2024 Journal: DOI: 10.1016/j.ifacol.2024.10.144 Lien HAL: https://hal.science/hal-04671587v1 Dynamic variable step size LMS adaptation algorithms---Application to adaptive feedforward noise attenuation Auteur(s): Tudor-Bogdan Airimitoaie, Bernard Vau, Dariusz Bismor, Gabriel Buche, Ioan Doré Landau Année de publication: 2024 Journal: DOI: 10.23919/ECC64448.2024.10590806 Lien HAL: https://hal.science/hal-04509676v1 Recursive identification with regularization and on-line hyperparameters estimation Auteur(s): Bernard Vau, Tudor-Bogdan Airimitoaie Année de publication: 2024 Journal: DOI: Lien HAL: https://hal.science/hal-04671592v1 Tight hybridization of long short-term memory neural networks and robust Kalman filter for remaining useful life estimation of proton exchange membrane fuel cells Auteur(s): Mathias Lecroart, Audrey Giremus, Tudor-Bogdan Airimitoaie, Mathieu Chevrié, Christophe Farges Année de publication: 2024 Journal: DOI: 10.23919/EUSIPCO63174.2024.10715402 Lien HAL: https://hal.science/hal-04625867v1 Can dynamic adaptation gain speed up recursive least squares algorithm? Auteur(s): Ioan Doré Landau, Tudor-Bogdan Airimitoaie, Bernard Vau, Gabriel Buche Année de publication: 2024 Journal: DOI: 10.1109/CDC56724.2024.10886185 Lien HAL: https://hal.science/hal-04790798v1 Artificial Intelligence for Defence in an EQF6 Training and Education Program, From the Design to the Execution Auteur(s): Eric Grivel, Baptiste Pesquet, Tudor-Bogdan Airimitoaie, Akka Zemmari Année de publication: 2023 Journal: DOI: Lien HAL: https://hal.science/hal-04005245v1 Convertible delta-wing aircraft for teaching and research Auteur(s): Tudor-Bogdan Airimitoaie, Christophe Farges, Loïc Lavigne, Franck Cazaurang Année de publication: 2023 Journal: DOI: 10.1016/j.ifacol.2019.11.289 Lien HAL: https://hal.science/hal-02378547v1 Principles of a safe and high performing CRONE control of nonlinear systems Auteur(s): Patrick Lanusse, Tudor-Bogdan Airimitoaie, Evgeny Shulga, Stéphane Maurel Année de publication: 2023 Journal: DOI: 10.1109/ICFDA58234.2023.10153309 Lien HAL: https://hal.science/hal-04163214v1 Optimal CRONE control of the intake manifold pressure of a spark ignition internal combustion engine Auteur(s): Evgeny Shulga, Stéphane Maurel, Tudor-Bogdan Airimitoaie, Patrick Lanusse Année de publication: 2023 Journal: DOI: 10.1109/ICFDA58234.2023.10153274 Lien HAL: https://hal.science/hal-04163207v1 Indirect adaptive control of unknown diffusion equation Auteur(s): Tudor-Bogdan Airimitoaie, Christophe Collewet Année de publication: 2023 Journal: DOI: 10.2514/6.2014-2938 Lien HAL: https://inria.hal.science/hal-01101083v1 Improving robust stability by increasing the number of controlled degrees of freedom Auteur(s): Tudor-Bogdan Airimitoaie, Christophe Collewet Année de publication: 2023 Journal: DOI: 10.2514/6.2014-2974 Lien HAL: https://hal.inrae.fr/hal-02606200v1 Does a general structure exist for adaptation/learning algorithms? Auteur(s): Ioan Doré Landau, Tudor-Bogdan Airimitoaie Année de publication: 2022 Journal: DOI: 10.1109/CDC51059.2022.9993076 Lien HAL: https://hal.science/hal-03738223v1 Improving adaptation/learning transients using a dynamic adaptation gain/learning rate -Theoretical and experimental results Auteur(s): Ioan Doré Landau, Tudor-Bogdan Airimitoaie, Bernard Vau, Gabriel Buche Année de publication: 2022 Journal: DOI: 10.23919/ECC57647.2023.10178384 Lien HAL: https://hal.science/hal-03823964v2 Model Predictive Control of engine intake manifold pressure with an uncertain model Auteur(s): Evgeny Shulga, Patrick Lanusse, Tudor-Bogdan Airimitoaie, Stéphane Maurel, Arnaud Trutet Année de publication: 2022 Journal: DOI: 10.1016/j.ifacol.2021.08.566 Lien HAL: https://hal.science/hal-03580824v1Send a email to Tudor-Bogdan AIRIMITOAIE :



