Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri Nets
The importance of public transport systems continues to grow. These systems must respond to an increasing demand for population mobility and traffic disturbances. Rail transport networks can be considered as Discrete Event Systems (DES) with time constraints. The time factor is a critical parameter,...
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doaj-b3c75c3c0f814398b8244ff25d627aaf2020-11-25T00:13:24ZengHindawi LimitedJournal of Engineering2314-49042314-49122018-01-01201810.1155/2018/20835762083576Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri NetsAnis Mhalla0Mohanned Gaied1Research Laboratory LARA in Automatic Control, National Engineering School of Tunis (ENIT), University of Tunis el Manar, Tunis, TunisiaResearch Unit LARATSI Automatic Signal and Image Processing, National Engineering School of Monastir, Avenue Ibn El Jazzar, 5019 Monastir, TunisiaThe importance of public transport systems continues to grow. These systems must respond to an increasing demand for population mobility and traffic disturbances. Rail transport networks can be considered as Discrete Event Systems (DES) with time constraints. The time factor is a critical parameter, since it includes dates to be respected in order to avoid overlaps, delays, and collisions between trains. P-time Petri Nets have been recognized as powerful modeling and analysis tools for railway transport systems. Temporal disturbances in these systems include railway infrastructure, traffic management, and disturbances (weather, obstacles on the tracks, malice, social movement, etc.). The developments presented in this paper are devoted to the modeling and the study of the robustness of the railway transport systems in order to evaluate the stability and the efficiency of these networks. In this study two robust control strategies towards time disturbances are presented. The first one consists of compensating the disturbance as soon as it is observed in order to avoid constraints violation. The second one allows generating, by the control, a temporal lag identical to the disturbance in order to avoid the death of marks on the levels of synchronization transitions of the P-time Petri net model.http://dx.doi.org/10.1155/2018/2083576 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anis Mhalla Mohanned Gaied |
spellingShingle |
Anis Mhalla Mohanned Gaied Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri Nets Journal of Engineering |
author_facet |
Anis Mhalla Mohanned Gaied |
author_sort |
Anis Mhalla |
title |
Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri Nets |
title_short |
Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri Nets |
title_full |
Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri Nets |
title_fullStr |
Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri Nets |
title_full_unstemmed |
Modeling and Robustness Study of Railway Transport Networks Using P-Timed Petri Nets |
title_sort |
modeling and robustness study of railway transport networks using p-timed petri nets |
publisher |
Hindawi Limited |
series |
Journal of Engineering |
issn |
2314-4904 2314-4912 |
publishDate |
2018-01-01 |
description |
The importance of public transport systems continues to grow. These systems must respond to an increasing demand for population mobility and traffic disturbances. Rail transport networks can be considered as Discrete Event Systems (DES) with time constraints. The time factor is a critical parameter, since it includes dates to be respected in order to avoid overlaps, delays, and collisions between trains. P-time Petri Nets have been recognized as powerful modeling and analysis tools for railway transport systems. Temporal disturbances in these systems include railway infrastructure, traffic management, and disturbances (weather, obstacles on the tracks, malice, social movement, etc.). The developments presented in this paper are devoted to the modeling and the study of the robustness of the railway transport systems in order to evaluate the stability and the efficiency of these networks. In this study two robust control strategies towards time disturbances are presented. The first one consists of compensating the disturbance as soon as it is observed in order to avoid constraints violation. The second one allows generating, by the control, a temporal lag identical to the disturbance in order to avoid the death of marks on the levels of synchronization transitions of the P-time Petri net model. |
url |
http://dx.doi.org/10.1155/2018/2083576 |
work_keys_str_mv |
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