2014 7th International Workshop on Communication Technologies for Vehicles (Nets4Cars-Fall) 2014
DOI: 10.1109/nets4carsfall.2014.7000913
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Capacity gain with an alternative LTE railway communication network

Abstract: Abstract-GSM-Railways (GSM-R) is the first international communication network designed specifically for railways. Most of the deployed GSM-R networks were initially used only to provide the railway voice communication. However, as more of these GSM-R networks begin to support the European Train Control System (ETCS) signaling, the capacity of GSM-R turns out to be insufficient. GSM-R cannot fulfill the railway requirements, in terms of the number of simultaneous ETCS connections. This is why, alternative, mor… Show more

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Cited by 9 publications
(6 citation statements)
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“…Several types of communication systems are required, including (1) the communication of the pod's sensor data to and from a centralized data processor and (2) the communication related to the pod's location between the pod and the tube [20]. Certain challenges exist related to the pod communication and the collection of data, as well as the high-speed connection between the pods and the infrastructure [16,20,94,[124][125][126][127][128].…”
Section: Communication Systemmentioning
confidence: 99%
“…Several types of communication systems are required, including (1) the communication of the pod's sensor data to and from a centralized data processor and (2) the communication related to the pod's location between the pod and the tube [20]. Certain challenges exist related to the pod communication and the collection of data, as well as the high-speed connection between the pods and the infrastructure [16,20,94,[124][125][126][127][128].…”
Section: Communication Systemmentioning
confidence: 99%
“…The reliability has more consideration than capacity in LTE‐R networks configuration 2 . Although the capacity is less considered than the reliability in LTE‐R, the LTE‐R cell can serve 27 trains simultaneously at one of the main train stations and the capacity provided by the cell is enough to serve more trains at the same time 48 . The LTE‐R network is supposed to be able to operate at a very high speed up to 500 km/h, sometimes in very complex railway environments.…”
Section: Cbtc Operationmentioning
confidence: 99%
“…The LTE‐R network is supposed to be able to operate at a very high speed up to 500 km/h, sometimes in very complex railway environments. A growing number of research works has been contacted to prove that the LTE‐R can fulfill the railway requirements 43,48‐50 . Simulation results and technical analysis of these studies have proven that the LTE‐R system is the preferred candidate for the future of the railway communication system 48 …”
Section: Cbtc Operationmentioning
confidence: 99%
“…According to them, this is appropriate for ETCS L2 because a braking phase on the track determines the minimum headway time. Still, encouraged by rapid progress in commercial mobile communication technology, a recently conducted research [50][51][52][53][54] has changed the focus on new potential technologies that could replace GSM-R in the future. Currently, a Future Railway Mobile Communication System (FRMCS) based on 5G technology has the highest potential to succeed the GSM-R.…”
Section: Gsm-r Capacity Impactsmentioning
confidence: 99%