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Institute of Information Engineering, Automation, and Mathematics
prof. Ing. Miroslav Fikar, DrSc.
Home
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Projects
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Semester projects
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Position:
Head of institute
Lecturer
Department:
Department of Information Engineering and Process Control (DIEPC)
Room:
NB 677
eMail:
Home page:
https://www.uiam.sk/~fikar
Phone:
+421 259 325 367, +421 918 674 354
Skype:
miroslav.fikar
ORCID iD:
0000-0003-0042-4607
WoS ResearcherID:
K-7071-2012
Google Scholar:
OwXAwkkAAAAJ
Availability:
Unavailable:
From
20.11.2024
To
29.11.2024
Selected publications
Book
J. Mikleš
–
Ľ. Čirka
–
J. Oravec
–
M. Fikar
:
Design of H2 and Hinf control using Lyapunov functions
(in Slovak)
, FCHPT STU v Bratislave, 2022.
R. Paulen
–
M. Fikar
:
Optimal Operation of Batch Membrane Processes
, Springer, 2016.
M. Bakošová –
M. Fikar
:
Process Control
(in Slovak)
, Vydavateľstvo STU, Bratislava, 2008.
M. Fikar
:
Dynamic optimisation of Processes
(in Slovak)
, STU v Bratislave a Slovenská e-akadémia, n. o., 2007.
J. Mikleš
–
M. Fikar
:
Process Modelling, Identification, and Control
, Springer Verlag, Berlin Heidelberg, 2007.
Chapter or pages in book
M. Herceg –
M. Kvasnica
–
M. Fikar
:
Parametric Approach to Nonlinear Model Predictive Control
, In
Nonlinear Model Predictive Control
, Editor(s): Magni, L. and Raimondo, D. M. and Allgoewer, F., Springer Berlin / Heidelberg, pp. 381–389, 2009.
M. Fikar
:
Decoupling Control. Part 6.43: Control Systems, Robotics and Automation
, In
Encyclopedia of Life Support Systems (EOLSS)
, Editor(s): H. Unbehauen, EOLSS Publishers, Oxford, UK, 2004.
Article in journal
A. Ahmad –
R. Paulen
– R. Valo –
M. Fikar
– S. Engell:
Iterative real-time optimization of a membrane pilot plant
(in Anglo-Saxon).
Control Engineering Practice
, vol.
147
, pp. 105907, 2024.
Zenodo
M. Furka –
M. Kalúz
–
M. Fikar
–
M. Klaučo
:
Guidelines for Secure Process Control: Harnessing the Power of Homomorphic Encryption and State Feedback Control
.
IEEE ACCESS
, 2023.
Zenodo
M. Mojto – K. Ľubušký –
M. Fikar
–
R. Paulen
:
Data-Based Design of Multi-Model Inferential Sensors
.
Computers & Chemical Engineering
, vol.
178
, 2023.
arXiv
Zenodo
A. R. Gottu Mukkula – M. Mateáš –
M. Fikar
–
R. Paulen
:
Robust multi-stage model-based design of optimal experiments for nonlinear estimation
.
Computers & Chemical Engineering
, vol.
155
, pp. 107499, 2021.
arXiv
M. Mojto – K. Ľubušký –
M. Fikar
–
R. Paulen
:
Data-based design of inferential sensors for petrochemical industry
.
Computers & Chemical Engineering
, vol.
153
, pp. 107437, 2021.
arXiv
R. Paulen
–
M. Fikar
:
Dynamic real-time optimization of batch processes using Pontryagin’s minimum principle and set-membership adaptation
.
Computers & Chemical Engineering
, vol.
128
, pp. 488–495, 2019.
R. Paulen
–
M. Fikar
:
Dual-Control-Based Approach to Batch Process Operation under Uncertainty Based on Optimality-Conditions Parametrization
.
Industrial & Engineering Chemistry Research
, no. 30, vol.
58
, pp. 13508–13516, 2019.
A. Sharma – R. Valo –
M. Kalúz
–
R. Paulen
–
M. Fikar
:
Implementation of optimal strategy to economically improve batch membrane separation
.
Journal of Process Control
, vol.
76
, pp. 155–164, 2019.
J. Števek –
M. Kvasnica
–
M. Fikar
– A. Gomola:
A Parametric Programming Approach to Automated Integrated Circuit Design
.
IEEE Transactions on Control Systems Technology
, no. 4, vol.
26
, pp. 1180–1191, 2018.
A. Sharma – M. Jelemenský –
R. Paulen
–
M. Fikar
:
Modeling and optimal operation of batch closed-loop diafiltration processes
.
Chemical Engineering Research and Design
, vol.
122
, pp. 198–210, 2017.
M. Jelemenský – A. Sharma –
R. Paulen
–
M. Fikar
:
Time-optimal control of diafiltration processes in the presence of membrane fouling
.
Computers & Chemical Engineering
, vol.
91
, pp. 343–351, 2016.
M. Honek –
M. Kvasnica
– A. Szűcs – P. Šimončič –
M. Fikar
– B. Rohaľ-Ilkiv:
A low-complexity explicit MPC controller for AFR control
.
Control Engineering Practice
, no. 60, pp. 118–127, 2015.
M. Jelemenský –
R. Paulen
–
M. Fikar
– Z. Kovacs:
Time-Optimal Operation of Multi-Component Batch Diafiltration
.
Computers & Chemical Engineering
, vol.
83
, pp. 131–138, 2015.
M. Kalúz
– J. García-Zubía –
M. Fikar
–
Ľ. Čirka
:
A Flexible and Configurable Architecture for Automatic Control Remote Laboratories
.
IEEE Transactions on Learning Technologies
, no. 3, vol.
8
, pp. 299–310, 2015.
R. Paulen
– M. Jelemenský – Z. Kovacs –
M. Fikar
:
Economically optimal batch diafiltration via analytical multi-objective optimal control
.
Journal of Process Control
, vol.
28
, pp. 73–82, 2015.
R. Paulen
– B. Benyahia – M. A. Latifi –
M. Fikar
:
Analysis of optimal operation of a fed-batch emulsion copolymerization reactor used for production of particles with core–shell morphology
.
Computers & Chemical Engineering
, vol.
66
, pp. 233–243, 2014.
M. Kvasnica
– J. Hledík – I. Rauová –
M. Fikar
:
Complexity reduction of explicit model predictive control via separation
.
Automatica
, no. 6, vol.
49
, pp. 1776–1781, 2013.
R. Paulen
– M. Jelemenský –
M. Fikar
– Z. Kovacs:
Optimal balancing of temporal and buffer costs for ultrafiltration/diafiltration processes under limiting flux conditions
.
Journal of Membrane Science
, vol.
444
, pp. 87–95, 2013.
M. Podmajerský –
M. Fikar
– B. Chachuat:
Measurement-based optimization of batch and repetitive processes using an integrated two-layer architecture
.
Journal of Process Control
, no. 7, vol.
23
, pp. 943–955, 2013.
M. Kvasnica
–
M. Fikar
:
Clipping-Based Complexity Reduction in Explicit MPC
.
IEEE Transactions on Automatic Control
, no. 7, vol.
57
, pp. 1878–1883, 2012.
R. Paulen
–
M. Fikar
– G. Foley – Z. Kovacs – P. Czermak:
Optimal feeding strategy of diafiltration buffer in batch membrane processes
.
Journal of Membrane Science
, vol.
411-412
, pp. 160–172, 2012.
M. Kvasnica
– J. Löfberg –
M. Fikar
:
Stabilizing polynomial approximation of explicit MPC
.
Automatica
, no. 10, vol.
47
, pp. 2292–2297, 2011.
R. Paulen
–
M. Fikar
– Z. Kovacs – P. Czermak:
Process optimization of diafiltration with time-dependent water adding for albumin production
.
Chemical Engineering and Processing: Process Intensification
, no. 8, vol.
50
, pp. 815–821, 2011.
R. Paulen
– G. Foley –
M. Fikar
– Z. Kovacs – P. Czermak:
Minimizing the process time for ultrafiltration/diafiltration under gel polarization conditions
.
Journal of Membrane Science
, no. 1-2, vol.
380
, pp. 148–154, 2011.
M. Fikar
– Z. Kovacs – P. Czermak:
Dynamic Optimization of Batch Diafiltration Processes
.
Journal of Membrane Science
, no. 1-2, vol.
355
, pp. 168–174, 2010.
M. Kvasnica
– M. Herceg –
Ľ. Čirka
–
M. Fikar
:
Model predictive control of a CSTR: A hybrid modeling approach
.
Chemical papers
, no. 3, vol.
64
, pp. 301–309, 2010.
M. Čižniar – M. Podmajerský – T. Hirmajer –
M. Fikar
– M. A. Latifi:
Global optimization for parameter estimation of differential-algebraic systems
.
Chemical Papers
, no. 3, vol.
63
, pp. 274–283, 2009.
M. Herceg –
M. Kvasnica
–
M. Fikar
:
Minimum-time predictive control of a servo engine with deadzone
.
Control Engineering Practice
, no. 60, pp. 1349–1357, 2009.
T. Hirmajer –
M. Fikar
:
Optimal Control of a Two-Stage Reactor System
.
Chemical Papers
, no. 5, vol.
60
, pp. 381–387, 2006.
M. Fikar
– B. Chachuat – M. A. Latifi:
Optimal Operation of Alternating Activated Sludge Processes
.
Control Engineering Practice
, no. 7, vol.
13
, pp. 853–861, 2005.
U. Halldorsson –
M. Fikar
– H. Unbehauen:
Nonlinear predictive control with multirate optimisation step lengths
.
IEE Proceedings - Control Theory and Applications
, no. 3, vol.
152
, pp. 273–285, 2005.
M. Fikar
– H. Unbehauen:
Youla-Kučera design of decoupled control systems
.
International Journal of Control
, no. 3, vol.
75
, pp. 213–218, 2002.
A. Rusnák –
M. Fikar
– M. A. Latifi –
A. Mészáros
:
Receding Horizon Iterative Dynamic Programming with Discrete Time Models
.
Computers & Chemical Engineering
, no. 1, vol.
25
, pp. 161–167, 2001.
M. Fikar
– V. Kučera:
On minimum finite length control problem
.
International Journal of Control
, no. 2, vol.
73
, pp. 152–158, 2000.
M. Fikar
– M. A. Latifi – J. Corriou – Y. Creff:
CVP-Based Optimal Control of an Industrial Depropanizer Column
.
Computers & Chemical Engineering
, vol.
24
, pp. 909–915, 2000.
M. Fikar
– S. Engell – P. Dostál:
Design of Predictive LQ Controller
.
Kybernetika
, no. 4, vol.
35
, pp. 459–472, 1999.
M. Fikar
– M. A. Latifi – Y. Creff:
Optimal Changeover Profiles for an Industrial Depropanizer
.
Chemical Engineering Science
, no. 13-14, vol.
53
, pp. 2715–2720, 1999.
M. Fikar
– M. A. Latifi – F. Fournier – Y. Creff:
Application of Iterative Dynamic Programming to Optimal Control of a Distillation Column
.
Canadian Journal of Chemical Engineering
, no. 12, vol.
76
, pp. 110–117, 1998.
M. Fikar
– M. A. Latifi – F. Fournier – Y. Creff:
CVP versus IDP in Dynamic Optimisation of a Distillation Column
.
Computers & Chemical Engineering
, no. S, vol.
22
, pp. 625–628, 1998.
F. Fournier –
M. Fikar
– M. A. Latifi:
Control Vector Parametrization in Optimal Control of a Batch Electrochemical Reactor
.
Chemical & Biochemical Engineering Quarterly
, vol.
12
, pp. 81–85, 1998.
M. Fikar
– S. Engell:
Receding horizon predictive control based upon Youla-Kucera parametrisation
.
European Journal of Control
, no. 4, vol.
3
, pp. 304–316, 1997.
K. Najim – A. Rusnák –
A. Mészáros
–
M. Fikar
:
Constrained Long-Range Predictive Control Based on Artificial Neural Networks
.
International Journal of Systems Science
, no. 12, vol.
28
, pp. 1211–1226, 1997.
A. Rusnák –
M. Fikar
– K. Najim –
A. Mészáros
:
Generalized Predictive Control Based on Neural Networks
.
Neural Processing Letters
, no. 2, vol.
4
, pp. 107–112, 1996.
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