DocumentCode
663307
Title
A new maintenance model for high-speed railway signaling system
Author
Li, Di-Jie
Author_Institution
Beijing Nat. Railway Res. & Design, Inst. of Signal & Commun. Co., Ltd., Beijing, China
fYear
2013
fDate
Aug. 30 2013-Sept. 1 2013
Firstpage
239
Lastpage
244
Abstract
Considering current situation and problems of maintenance management in Chinese high-speed railway signaling system, an optimal maintenance model which is combined with maintenance activity is proposed. This model can reduce the maintenance cost and optimize period with considering the situation that the maintenance cost of system increases as time goes on and failure rate increases for system´s degradation. This model is based on periodic T preventive maintenance policy and groups the key devices of signal system. In the period of preventive maintenance all faults are removed by minimal maintenance or condition based maintenance in time-interval (0, S] and a perfect maintenance is done when a fault affects system operation in (S, T]. If no fault affects system operation in time-interval (S, T], a preventive maintenance is carried out in period T with a condition based maintenance carried out in the whole interval (0, T] continuously. Finally, according to the real system´s data analysis, supposing that groups can be maintained concurrently and group fault meets the Weibull distribution, a reasonable maintenance model is suggested by calculating optimal period and cost.
Keywords
Weibull distribution; condition monitoring; cost reduction; failure analysis; optimisation; preventive maintenance; railway engineering; signalling; Weibull distribution; concurrent maintenance; condition based maintenance; failure rate; group fault; high-speed railway signaling system; maintenance cost reduction; maintenance management; minimal maintenance; optimal cost calculation; optimal maintenance model; optimal period calculation; period optimization; periodic T preventive maintenance policy; real system data analysis; time interval; Communication system signaling; Preventive maintenance; Rail transportation; Reliability; Safety; Weibull distribution; group maintenance policy; high-speed railway signaling system; minimal maintenance; perfect maintenance; periodic preventive maintenance policy;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Rail Transportation (ICIRT), 2013 IEEE International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4673-5278-9
Type
conf
DOI
10.1109/ICIRT.2013.6696300
Filename
6696300
Link To Document