Persoonlijk profiel
Research profile
Amritam Das is an assistant professor in the Control Systems (CS) group at the Department of Electrical Engineering. His research develops computational methods for designing control systems that complements the ever-increasing availability of data with the power of physics. His research interests are robust and nonlinear control of multi-physics systems, physics-enabled learning for control, and model reduction. His research has been sucessfully applied to various technology trends in high-tech systems, power generation and neuroengineering.
Quote
Physics-centric and system-level thinking is the key to unlocking the full potential of data-driven technologies.
Academic background
Amritam Das received BTech. degree with a gold medal in Mechatronics Engineering from India in 2014. Then he joined Eindhoven University of Technology with an ALSP scholarship for pursuing his post-graduate study during which he was also a recipient of the Océ Merit Scholarship. After completing an MSc. in Systems and Control in 2016, till 2020, he was a doctoral candidate in the department of Electrical Engineering. After receiving his PhD. degree, till 2021, he was a research associate at the Control Group, University of Cambridge. During this period, he was also a research affiliate at Sidney Sussex college. During 2021-2022, he was a post-doctoral scholar at the Division of Decision and Control Systems of KTH Royal Institute of Technology, Sweden. Since February 2023, he has been working as an assistant professor at the Control Systems group.
Expertise gerelateerd aan duurzame ontwikkelingsdoelstellingen van de VN
In 2015 stemden de VN-lidstaten in met 17 wereldwijde duurzame ontwikkelingsdoelstellingen (Sustainable Development Goals, SDG's) om armoede te beëindigen, de planeet te beschermen en voor iedereen welvaart te garanderen. Het werk van deze persoon draagt bij aan de volgende duurzame ontwikkelingsdoelstelling(en):
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SDG 9 – Industrie, innovatie en infrastructuur
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SDG 13 – Klimaatactie
Vingerafdruk
- 1 Soortgelijke profielen
Samenwerkingen en hoofdonderzoeksgebieden uit de afgelopen vijf jaar
Projecten
- 1 Afgelopen
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Impuls II: Identification and control of thermal effects in printing systems
Weiland, S. (Project Manager), Das, A. (Projectmedewerker), Nawijn, H. (Project communicatie medewerker) & van der Hagen, D. (Project communicatie medewerker)
1/09/16 → 31/08/20
Project: Onderzoek direct
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Dual Representations and H∞-Optimal Control of Partial Differential Equations
Shivakumar, S., Das, A. & Peet, M., 20 feb. 2026, (E-publicatie vóór gedrukte publicatie) In: IEEE Transactions on Automatic Control. XXOnderzoeksoutput: Bijdrage aan tijdschrift › Tijdschriftartikel › Academic › peer review
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Automated Linear Parameter-Varying Modeling of Nonlinear Systems: A Global Embedding Approach
Olucha, E. J., Koelewijn, P. J. W., Das, A. & Tóth, R., 1 jul. 2025, In: IFAC-PapersOnLine. 59, 15, blz. 49-54 6 blz.Onderzoeksoutput: Bijdrage aan tijdschrift › Congresartikel › peer review
Open AccessBestand2 Downloads (Pure) -
Extension of the Partial Integral Equation Representation to GPDE Input-Output Systems
Shivakumar, S., Das, A., Weiland, S. & Peet, M., mei 2025, In: IEEE Transactions on Automatic Control. 70, 5, blz. 3240-3255 16 blz., 10767284.Onderzoeksoutput: Bijdrage aan tijdschrift › Tijdschriftartikel › Academic › peer review
Open AccessBestand1 !!Link opens in a new tab Citaat (Scopus)8 Downloads (Pure) -
Graphical Analysis of Nonlinear Multivariable Feedback Systems
Krebbekx, J. P. J., Tóth, R. & Das, A., 22 jul. 2025, arXiv.org, 16 blz.Onderzoeksoutput: Werkdocument › Preprint › Academic
Open AccessBestand19 Downloads (Pure) -
Nonlinear Bandwidth and Bode Diagrams based on Scaled Relative Graphs
Krebbekx, J. P. J., Tóth, R. & Das, A., 2 apr. 2025, arXiv.org, 8 blz.Onderzoeksoutput: Werkdocument › Preprint › Academic
Open AccessBestand15 Downloads (Pure)
Datasets
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PIETOOLS 2020a
Peet, M. M. (Ontwerper), Shivakumar, S. (Ontwerper) & Das, A. (Bijdrager), Code Ocean, 1 jul. 2021
Dataset
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POD and low-dimensional LPV approximations for nonlinear controller design exemplified for incompressible Navier-Stokes equations
Heiland, J. (Ontwerper) & Das, A. (Ontwerper), Zenodo, 5 nov. 2023
DOI: 10.5281/zenodo.10073483, https://zenodo.org/records/10073483
Dataset
Cursussen
Knipsels
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System Level Thinking in High Performance Inkjet Printing
26/04/19
1 Mediabijdrage
Pers / media: Onderzoek