DocumentCode :
3589189
Title :
A quasi-moving block redundant non vital system model for conventional single line absolute block railway system
Author :
Karredla, Ganesh V. ; Srinivas, C. H. Lalit
Author_Institution :
R&D Center, CMC Ltd., Hyderabad, India
fYear :
2014
Firstpage :
127
Lastpage :
132
Abstract :
Due to every increasing demand and need of a rapid urban passenger and freight rail transit system at affordable cost, it is required to enhance the present system capacity to meet these higher demands. The best adopted common methods are to increase the number of bogies of a train or to shorten the train separation intervals by using more effective block control means. In this paper a study on Indian railway two-aspect absolute block system signaling is attempted and we propose a quasi moving block system as a redundant non vital system model for class `B´ single line two-aspect absolute block signaling system and present an instantaneous adequate distance formula under this quasi moving block system. We also computed and compared the steady state capacity of a two-aspect single straight line for both absolute block system and quasi moving block system for different wait times and block section lengths. The train headways can be effectively controlled by reducing the wait time for line clearance, thereby enhancing the track utilization.
Keywords :
rail traffic control; Indian railway two-aspect absolute block system signaling; class B single line two-aspect absolute block signaling system; freight rail transit system; quasimoving block redundant nonvital system model; rapid urban passenger rail transit system; single line absolute block railway system; track utilization; train bogies; train headway control; train separation intervals; two-aspect single straight line; Computational modeling; Conferences; Control systems; Intelligent systems; Rail transportation; Steady-state; Vehicles; absolute block system; quasi moving block system; redundant non vital; two-aspect signaling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Systems and Control (ISCO), 2014 IEEE 8th International Conference on
Print_ISBN :
978-1-4799-3836-0
Type :
conf
DOI :
10.1109/ISCO.2014.7103931
Filename :
7103931
Link To Document :
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