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Remigiusz Wisniewski
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- affiliation: University of Zielona Góra, Institute of Electrical Engineering, Poland
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2020 – today
- 2024
- [j19]Shaopeng Hu, Zhiwu Li, Remigiusz Wisniewski:
Optimal Sensor Selection for Diagnosability Enforcement in Labeled Petri Nets. IEEE Trans. Syst. Man Cybern. Syst. 54(5): 2965-2977 (2024) - [c20]Maxim Malinski, Marcin Wojnakowski, Remigiusz Wisniewski, Andrzej Obuchowicz:
Transition Invariants in the Analysis of Concurrent Systems Modelled by Petri Nets. DoCEIS 2024: 269-279 - 2023
- [c19]Remigiusz Wisniewski, Grzegorz Bazydlo, Marcin Wojnakowski, Mateusz Poplawski:
Hippo-CPS: A Tool for Verification and Analysis of Petri Net-Based Cyber-Physical Systems. Petri Nets 2023: 191-204 - [c18]Mateusz Poplawski, Remigiusz Wisniewski, Grzegorz Bazydlo, Maxim Malinski:
Preliminary Verification of Liveness in a Control Part of Cyber-Physical Systems Modeled by a Petri Net. DoCEIS 2023: 205-215 - [c17]Marcin Wojnakowski, Remigiusz Wisniewski, Mateusz Poplawski:
A Polynomial-Time Algorithm for Detecting Potentially Unbounded Places in a Petri Net-Based Concurrent System. Euro-Par Workshops 2023: 277-283 - [c16]Wenli Duo, Shouguang Wang, MengChu Zhou, Dan You, Remigiusz Wisniewski, Grzegorz Bazydlo:
Supervisory Control of Cyber-Physical Systems Subject to Actuator Jamming Attacks. ICNSC 2023: 1-6 - [c15]Remigiusz Wisniewski, Justyna Patalas-Maliszewska, Marcin Wojnakowski, Marcin Topczak, Mengchu Zhou:
Fast Verification of Petri Net-Based Model of Industrial Decision-Making Systems: A Case Study. SMC 2023: 3316-3322 - 2022
- [j18]Shaohua Wan, Remigiusz Wisniewski, George C. Alexandropoulos, Zonghua Gu, Pierluigi Siano:
Special Issue on Optimization of Cross-layer Collaborative Resource Allocation for Mobile Edge Computing, Caching and Communication. Comput. Commun. 181: 472-473 (2022) - [j17]Grzegorz Bazydlo, Remigiusz Wisniewski, Kamil Kozdrój:
Trusted and Secure Blockchain-Based Durable Medium Electronic Service. Cryptogr. 6(1): 10 (2022) - [c14]Marcin Wojnakowski, Mateusz Poplawski, Remigiusz Wisniewski, Grzegorz Bazydlo:
Hippo-CPS: Verification of Boundedness, Safeness and Liveness of Petri Net-Based Cyber-Physical Systems. DoCEIS 2022: 74-82 - [c13]Justyna Patalas-Maliszewska, Remigiusz Wisniewski, Marcin Topczak, Marcin Wojnakowski:
Modelling of the effectiveness of integrating additive manufacturing technologies into Petri net-based manufacturing systems. FUZZ-IEEE 2022: 1-9 - [c12]Marcin Wojnakowski, Remigiusz Wisniewski, Mateusz Poplawski, Grzegorz Bazydlo:
Analysis of Control Part of Cyber-Physical Systems Specified by Interpreted Petri Nets. SMC 2022: 1090-1095 - [c11]Remigiusz Wisniewski, Justyna Patalas-Maliszewska, Marcin Wojnakowski, Marcin Topczak:
Interpreted Petri Nets in Modelling and Analysis of Physical Resilient Manufacturing Systems. SMC 2022: 1096-1102 - 2021
- [j16]Marcin Wojnakowski, Remigiusz Wisniewski, Grzegorz Bazydlo, Mateusz Poplawski:
Analysis of safeness in a Petri net-based specification of the control part of cyber-physical systems. Int. J. Appl. Math. Comput. Sci. 31(4): 647-657 (2021) - [c10]Marcin Wojnakowski, Remigiusz Wisniewski:
Verification of the Boundedness Property in a Petri Net-Based Specification of the Control Part of Cyber-Physical Systems. DoCEIS 2021: 83-91 - 2020
- [j15]Remigiusz Wisniewski, Iwona Grobelna, Andrei Karatkevich:
Determinism in Cyber-Physical Systems Specified by Interpreted Petri Nets. Sensors 20(19): 5565 (2020) - [j14]Remigiusz Wisniewski, Mengchu Zhou, Luís Gomes, Maria Pia Fanti, Ratnesh Kumar:
Special Issue on Recent Advances in Petri Nets, Automata, and Discrete-Event Hybrid Systems. IEEE Trans. Syst. Man Cybern. Syst. 50(10): 3484-3487 (2020) - [j13]Andrei Karatkevich, Remigiusz Wisniewski:
A Polynomial-Time Algorithm to Obtain State Machine Cover of Live and Safe Petri Nets. IEEE Trans. Syst. Man Cybern. Syst. 50(10): 3592-3597 (2020)
2010 – 2019
- 2019
- [j12]Remigiusz Wisniewski, Monika Wisniewska, Marcin Jarnut:
C-Exact Hypergraphs in Concurrency and Sequentiality Analyses of Cyber-Physical Systems Specified by Safe Petri Nets. IEEE Access 7: 13510-13522 (2019) - [j11]Remigiusz Wisniewski, Grzegorz Bazydlo, Pawel Szczesniak, Marcin Wojnakowski:
Petri Net-Based Specification of Cyber-Physical Systems Oriented to Control Direct Matrix Converters With Space Vector Modulation. IEEE Access 7: 23407-23420 (2019) - [j10]Remigiusz Wisniewski, Grzegorz Benysek, Luís Gomes, Dariusz Kania, Theodore E. Simos, Mengchu Zhou:
IEEE Access Special Section: Cyber-Physical Systems. IEEE Access 7: 157688-157692 (2019) - [j9]Remigiusz Wisniewski, Grzegorz Bazydlo, Pawel Szczesniak:
SVM algorithm oriented for implementation in a low-cost Xilinx FPGA. Integr. 64: 163-172 (2019) - [j8]Remigiusz Wisniewski, Andrei Karatkevich, Lukasz Stefanowicz, Marcin Wojnakowski:
Decomposition of distributed edge systems based on the Petri nets and linear algebra technique. J. Syst. Archit. 96: 20-31 (2019) - [j7]Remigiusz Wisniewski, Grzegorz Bazydlo, Pawel Szczesniak:
Low-Cost FPGA Hardware Implementation of Matrix Converter Switch Control. IEEE Trans. Circuits Syst. II Express Briefs 66-II(7): 1177-1181 (2019) - [c9]Remigiusz Wisniewski, Grzegorz Bazydlo, Luís Gomes, Anikó Costa, Marcin Wojnakowski:
Analysis and Design Automation of Cyber-Physical System with Hippo and IOPT-Tools. IECON 2019: 5843-5848 - [c8]Iwona Grobelna, Remigiusz Wisniewski, Marcin Wojnakowski:
Specification of Cyber-Physical Systems with the Application of Interpreted Nets. IECON 2019: 5887-5891 - 2018
- [j6]Remigiusz Wisniewski:
Dynamic Partial Reconfiguration of Concurrent Control Systems Specified by Petri Nets and Implemented in Xilinx FPGA Devices. IEEE Access 6: 32376-32391 (2018) - [j5]Remigiusz Wisniewski, Iwona Grobelna:
Design of Multi-Context Reconfigurable Logic Controllers Implemented in FPGA Devices Oriented for Further Partial Reconfiguration. J. Circuits Syst. Comput. 27(6): 1850086:1-1850086:26 (2018) - [j4]Remigiusz Wisniewski, Andrei Karatkevich, Marian Adamski, Anikó Costa, Luís Gomes:
Prototyping of Concurrent Control Systems With Application of Petri Nets and Comparability Graphs. IEEE Trans. Control. Syst. Technol. 26(2): 575-586 (2018) - 2017
- [j3]Remigiusz Wisniewski, Grzegorz Bazydlo, Luís Gomes, Anikó Costa:
Dynamic Partial Reconfiguration of Concurrent Control Systems Implemented in FPGA Devices. IEEE Trans. Ind. Informatics 13(4): 1734-1741 (2017) - [j2]Iwona Grobelna, Remigiusz Wisniewski, Michal Grobelny, Monika Wisniewska:
Design and Verification of Real-Life Processes With Application of Petri Nets. IEEE Trans. Syst. Man Cybern. Syst. 47(11): 2856-2869 (2017) - 2014
- [c7]Remigiusz Wisniewski, Andrei Karatkevich, Marian Adamski, Daniel Kur:
Application of comparability graphs in decomposition of Petri nets. HSI 2014: 216-220 - [c6]Iwona Grobelna, Monika Wisniewska, Remigiusz Wisniewski, Michal Grobelny, Piotr Mroz:
Decomposition, validation and documentation of control process specification in form of a Petri net. HSI 2014: 232-237 - [c5]Arkadiusz Bukowiec, Jacek Tkacz, Marian Adamski, Remigiusz Wisniewski:
Dual synthesis of Petri net based dependable logic controllers for safety critical systems. HSI 2014: 243-248 - [c4]Lukasz Stefanowicz, Marian Adamski, Remigiusz Wisniewski, Jakub Lipinski:
Application of Hypergraphs to SMCs Selection. DoCEIS 2014: 249-256 - 2013
- [c3]Lukasz Stefanowicz, Marian Adamski, Remigiusz Wisniewski:
Application of an Exact Transversal Hypergraph in Selection of SM-Components. DoCEIS 2013: 250-257 - 2011
- [j1]Remigiusz Wisniewski, Alexander Barkalov, Larysa Titarenko, Wolfgang A. Halang:
Design of microprogrammed controllers to be implemented in FPGAs. Int. J. Appl. Math. Comput. Sci. 21(2): 401-412 (2011) - [c2]Remigiusz Wisniewski, Monika Wisniewska, Marek Wegrzyn, Norian Marranghello:
Design of microprogrammed controllers with address converter implemented on programmable systems with embedded memories. EWDTS 2011: 123-126 - [c1]Monika Wisniewska, Remigiusz Wisniewski, Marek Wegrzyn, Norian Marranghello:
Reduction of the memory size in the microprogrammed controllers. EWDTS 2011: 127-130
Coauthor Index
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last updated on 2024-10-07 22:07 CEST by the dblp team
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