Model-based verification method for solving the parameter uncertainty in the train control system

  • Ruijun CHENG
  • , Jin ZHOU
  • , Dewang CHEN*
  • , Yongduan SONG
  • *Corresponding author for this work

Research output: Journal PublicationsJournal Article (refereed)peer-review

22 Citations (Scopus)

Abstract

This paper presents a parameter analysis method to solve the parameter uncertainty problem for hybrid system and explore the correlation of key parameters for distributed control system. For improving the reusability of control model, the proposed approach provides the support for obtaining the constraint sets of all uncertain parameters in the abstract linear hybrid automata (LHA) model when satisfying the safety requirements of the train control system. Then, in order to solve the state space explosion problem, the online verification method is proposed to monitor the operating status of high-speed trains online because of the real-time property of the train control system. Furthermore, we construct the LHA formal models of train tracking model and movement authority (MA) generation process as cases to illustrate the effectiveness and efficiency of the proposed method. In the first case, we obtain the constraint sets of uncertain parameters to avoid collision between trains. In the second case, the correlation of position report cycle and MA generation cycle is analyzed under both the normal and the abnormal condition influenced by packet-loss factor. Finally, considering stochastic characterization of time distributions and real-time feature of moving block control system, the transient probabilities of wireless communication process are obtained by stochastic time petri nets.
Original languageEnglish
Pages (from-to)169-182
Number of pages14
JournalReliability Engineering and System Safety
Volume145
Early online date28 Sept 2015
DOIs
Publication statusPublished - Jan 2016
Externally publishedYes

Funding

This work has been partially funded by research projects from the State Key Laboratory of Rail Traffic Control and Safety under Grant RCS2014ZZ02, Beijing Natural Science Foundation under Grant 4142044 , the National Science Foundation of China under Grant 61103153/F020503, Start Funding for Minjiang Chair Professor by Fujian Province.

Keywords

  • High-speed train control system
  • Linear hybrid automata
  • Parameter uncertainty
  • Reachable state analysis
  • Stochastic time petri nets
  • System safety verification

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