DocumentCode
1848941
Title
Efficient driving algorithms for non-disturbed and disturbed trains with the CBTC signalling system
Author
Carvajal-Carreno, William ; Cucala Garcia, Asuncion P. ; Fernandez-Cardador, Antonio ; Soder, Lennart
Author_Institution
Inst. for Res. in Technol., Pontifical Comillas Univ., Madrid, Spain
fYear
2015
fDate
3-5 June 2015
Firstpage
418
Lastpage
425
Abstract
Trains with automatic train operation (ATO)-communication-based train control (CBTC) have the capability to follow a predesigned or calculated speed profile and also can change the control command at any point of the route. This paper presents the advances in the research about designing driving profiles for ATO trains under the CBTC signalling system. Two algorithms based on simulation are proposed, one for the offline design of single undisturbed train trajectories and the other is a real-time algorithm to save energy when there is interaction between two consecutive trains. These algorithms were tested using a simulation-based metaheuristic optimization for the first case and a two-train tracking simulator for the second. The results showed that energy savings could be attained using the proposed algorithms maintaining the required safety and passenger comfort levels in the railway operation.
Keywords
optimisation; rail traffic control; railway safety; ATO-CBTC; CBTC signalling system; automatic train operation; communication-based train control; disturbed trains; energy saving; nondisturbed trains; railway safety; simulation-based metaheuristic optimization; two-train tracking simulator; Algorithm design and analysis; Energy consumption; Heuristic algorithms; Intelligent transportation systems; Optimization; Sociology; Statistics; ATO; CBTC; Fuzzy; NSGA-II-F; disturbed train; energy-efficient; optimization; pseudo-Pareto front; simulation; tracking algorithm;
fLanguage
English
Publisher
ieee
Conference_Titel
Models and Technologies for Intelligent Transportation Systems (MT-ITS), 2015 International Conference on
Conference_Location
Budapest
Print_ISBN
978-9-6331-3140-4
Type
conf
DOI
10.1109/MTITS.2015.7223289
Filename
7223289
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