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Philippe Declerck
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2020 – today
- 2024
- [j14]Philippe Declerck:
Offline analysis of the relaxed upper boundedness for online estimation ofoptimal event sequences in Partially Observable Petri Nets. Discret. Event Dyn. Syst. 34(2): 351-374 (2024) - [j13]Philippe Declerck, Patrice Bonhomme:
Two-staged approach for estimation of sequences in partially observable P-time Petri nets on a sliding horizon with schedulability analysis. Int. J. Control 97(6): 1341-1350 (2024) - 2022
- [j12]Philippe Declerck:
Optimization of the Time Durations by Exploiting Time Margins in Time Interval Models. IEEE Trans. Control. Syst. Technol. 30(2): 755-766 (2022) - 2021
- [j11]Philippe Declerck:
Critical subsystems in time interval models. Discret. Event Dyn. Syst. 31(1): 25-35 (2021) - [j10]Philippe Declerck:
Counter approach for the estimation of optimal sequences in Partially Observable Untimed Petri Nets. Discret. Event Dyn. Syst. 31(4): 489-512 (2021)
2010 – 2019
- 2018
- [j9]Philippe Declerck:
Extremum Cycle Times in Time Interval Models. IEEE Trans. Autom. Control. 63(6): 1821-1827 (2018) - 2017
- [c11]Philippe Declerck, Amira Chouchane, Patrice Bonhomme:
A strategy for estimation in timed Petri nets. CoDIT 2017: 489-494 - 2016
- [j8]Philippe Declerck:
Compromise approach for predictive control of Timed Event Graphs with specifications defined by P-time Event Graphs. Discret. Event Dyn. Syst. 26(4): 611-632 (2016) - 2014
- [j7]Philippe Declerck, Abdelhak Guezzi:
State estimation and detection of changes in time interval models. Discret. Event Dyn. Syst. 24(1): 53-68 (2014) - [j6]Philippe Declerck, Abdelhak Guezzi:
Predictive control of Timed Event Graphs with specifications defined by P-time Event Graphs. Discret. Event Dyn. Syst. 24(3): 261-273 (2014) - [j5]Philippe Declerck:
Cycle time of a P-time Event Graph with affine-interdependent residence durations. Discret. Event Dyn. Syst. 24(4): 523-540 (2014) - [j4]Philippe Declerck, Patrice Bonhomme:
State Estimation of Timed Labeled Petri Nets With Unobservable Transitions. IEEE Trans Autom. Sci. Eng. 11(1): 103-110 (2014) - [c10]Philippe Declerck:
Causality Phenomenon and Compromise Technique for Predictive Control of Timed Event Graphs with Specifications Defined by P-Time Event Graphs. WODES 2014: 99-104 - 2011
- [j3]Philippe Declerck:
From Extremal Trajectories to Token Deaths in P-time Event Graphs. IEEE Trans. Autom. Control. 56(2): 463-467 (2011) - 2010
- [j2]Philippe Declerck, Mohamed Khalid Didi Alaoui:
Optimal Control Synthesis of Timed Event Graphs With Interval Model Specifications. IEEE Trans. Autom. Control. 55(2): 518-523 (2010) - [c9]Philippe Declerck:
Trajectory tracking control of a timed event graph with specifications defined by a P-time event graph: On-line control and off-line preparation. WODES 2010: 155-160
2000 – 2009
- 2009
- [c8]Abdelhak Guezzi, Philippe Declerck:
Performance Evaluation of Discret Event Systems using P-time Event Graphs. ETFA 2009: 1-8 - 2008
- [c7]Abdelhak Guezzi, Philippe Declerck, Jean-Louis Boimond:
From monotone inequalities to Model Predictive Control. ETFA 2008: 1310-1317 - 2007
- [c6]Philippe Declerck, Abdelhak Guezzi, Jean-Louis Boimond:
Cycle time of p-time event graphs. ICINCO-ICSO 2007: 489-496 - 2005
- [c5]Philippe Declerck, Mohamed Khalid Didi Alaoui:
Extremal trajectories in P-time Event Graphs: application to control synthesis with specifications. CDC/ECC 2005: 7621-7626 - 2004
- [c4]Mohamed Khalid Didi Alaoui, Philippe Declerck:
From DIOID Algebra to P-Time Event Graphs. ICINCO (3) 2004: 332-337 - [c3]Philippe Declerck, Mohamed Khalid Didi Alaoui:
Modelling and analysis of p-time event graphs in the (min, max, +) algebra. SMC (2) 2004: 1807-1812 - 2003
- [c2]Mohamed Khalid Didi Alaoui, Philippe Declerck:
Control synthesis in (max, +) systems. ETFA (1) 2003: 634-639 - 2000
- [c1]Philippe Declerck, Roland Guihur:
Supervisory control after perturbation. SMC 2000: 2192-2197
1990 – 1999
- 1999
- [j1]Philippe Declerck:
Predictability and control synthesis. Kybernetika 35(1): 25-38 (1999)
Coauthor Index
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