An extended system-theoretic hazard analysis method for the safety of high-speed railway train control systems

Author(s):  
Jin Tao Liu ◽  
Tao Tang ◽  
Jie Bei Zhu ◽  
Lin Zhao
2021 ◽  
Vol 2021 ◽  
pp. 1-20
Author(s):  
Jinyi Pan ◽  
Qiyuan Peng ◽  
Shuguang Zhan ◽  
Jiaqi Bai

Chinese high-speed railway has implemented large-scale network operation with an urgent need for capacity improvement. The concept of virtual coupling seems to be a promising solution that provides a new operational scenario for high-speed railway, where trains are formed into a cooperative convoy and run synchronously with small train headways. The train-following principles under the virtual coupling signalling are quite different from those under conventional train control systems. Therefore, train headway analysis for different operational scenarios should be carried out to ensure railway safety and evaluate capacity benefits brought by virtual coupling. This paper proposes a potential virtual coupling architecture with reference to ETCS/ERTMS specifications. We compare blocking time models under different train control systems, and eight typical train-following scenarios are investigated for virtual coupling, including train arrival and departure cases. A detailed multiscenario-based train headway analysis is provided based on the microscopic infrastructure of the station and technological characteristics of virtual coupling. All computational outcomes are based on the train dynamic motion model. A comparative analysis of train headways under virtual coupling and CTCS-3 is provided in the case study. Results show that train headways can be substantially reduced under virtual coupling and are related to the station infrastructure layout.


Author(s):  
Kang-Gyoo Lee ◽  
Jong-gwoan Choi ◽  
Dong-Il Sung ◽  
Hak-Sun Yun ◽  
Jong-Won Park ◽  
...  

2012 ◽  
Vol 220-223 ◽  
pp. 2783-2787
Author(s):  
Shu Xu Zhao ◽  
Xiao Ming Wang ◽  
Ai Ling Zhang

Train Movement Authority(MA) concerns train movement safety. This paper proposed a formal model for Chinese Train Control System-3(CTCS-3) based on train MA. Paper analyzed the rounded CTCS-3, formed MA computation models for various application functions, and finished MA hierarchical and functional computation models based on Colored Petri Nets(CPN). The results of experiment demonstrates that the model proposed in this paper is effective, it can reflect the whole information change and transmission process of CTCS-3 accurately, and can help to design and develop MA of CTCS-3.


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