DocumentCode :
1760798
Title :
Multiobjective Optimization for Train Speed Trajectory in CTCS High-Speed Railway With Hybrid Evolutionary Algorithm
Author :
Wei ShangGuan ; Xi-Hui Yan ; Bai-Gen Cai ; Jian Wang
Author_Institution :
State Key Lab. of Rail Traffic Control & Safety, Beijing Jiaotong Univ., Beijing, China
Volume :
16
Issue :
4
fYear :
2015
fDate :
Aug. 2015
Firstpage :
2215
Lastpage :
2225
Abstract :
A speed trajectory profile indicating the authorized train speed at each position can be used to guide the driver or the automatic train operation (ATO) system to operate the train more efficiently, which is the most important part of the Chinese Train Control System (CTCS) and will decide the safety and efficiency of train operation. The efforts produced by the train to follow the speed trajectory will directly affect the evaluation of train operation. This paper studies the optimization approach for the speed trajectory of high-speed train in a single section. First, we take the energy consumption as the measure of satisfaction of the railway company, and the trip time is being regarded as the passenger satisfaction criterion; then, we present optimal speed trajectory searching strategies under different track characteristics by dividing the section into some subsections according to different speed limitations. After that, we develop a multiobjective optimization model for the speed trajectory, which is subject to the constraints such as safety requirement, track profiles, passenger comfort, and the dynamic performance. For obtaining the Pareto frontier of train speed trajectory, which has equal satisfaction degree on all the objects, a hybrid evolutionary algorithm is designed and applied to solve the model based on the differential evolution and simulating annealing algorithms. By showing some numerical results of simulations, the efficiency of the proposed model and solution methodology is illustrated.
Keywords :
Pareto optimisation; control engineering computing; ergonomics; evolutionary computation; railway safety; trajectory control; velocity control; ATO; CTCS high-speed railway; Chinese train control system; Pareto frontier; authorized train speed; automatic train operation system; dynamic performance; energy consumption; hybrid evolutionary algorithm; multiobjective optimization; multiobjective optimization model; optimal speed trajectory searching strategies; optimization approach; passenger comfort; passenger satisfaction criterion; railway company; safety requirement; speed limitations; speed trajectory; speed trajectory profile; track characteristics; track profiles; train speed trajectory; Energy consumption; Evolutionary computation; Force; Optimization; Rail transportation; Resistance; Trajectory; Chinese train control system (CTCS); energy efficient; high-speed railway; hybrid evolutionary algorithm; multiobjective optimization; train speed trajectory;
fLanguage :
English
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1524-9050
Type :
jour
DOI :
10.1109/TITS.2015.2402160
Filename :
7057643
Link To Document :
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