2008WIT transactions on the built environmentOpen access

The impact of GSM-R on railway capacity

David N. Jansen, S. G. Klabes, Ekkehard Wendler

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Abstract

The operation of railway systems strongly depends on the underlying train control system.ERTMS (European Rail Traffic Management System) is a project launched by the European Union in order to increase the interoperability of the national railway systems in Europe.One of the two main components of ERTMS is GSM-R, a wireless communication standard based on GSM.In this paper, we focus on the stochastic nature of GSM-R communication failures and their possible impact on railway capacity.Firstly, we will compare the results of our newly introduced model to the results obtained with a standard blocking time model, applied by a couple of European railway infrastructure managers.After this validation of our model, we will then use the stochastic approach in order to evaluate the impact of GSM-R communication on the railway operation and railway capacity with ETCS level 3. We can show that ETCS level 3 indeed leads to a capacity increase in our setting.So, while a single GSM-R message may be more error-prone than traditional communication, the framework of ETCS can cope well with this imperfection.

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The operation of railway systems strongly depends on the underlying train control system.ERTMS (European Rail Traffic Management System) is a project launched by the European Union in order to increase the interoperability of the national railway systems in Europe.One of the two main components of ERTMS is GSM-R, a wireless communication standard based on GSM.In this paper, we focus on the stochastic nature of GSM-R communication failures and their possible impact on railway capacity.Firstly, we will compare the results of our newly introduced model to the results obtained with a standard blocking time model, applied by a couple of European railway infrastructure managers.After this validation of our model, we will then use the stochastic approach in order to evaluate the impact of GSM-R communication on the railway operation and railway capacity with ETCS level 3. We can show that ETCS level 3 indeed leads to a capacity increase in our setting.So, while a single GSM-R message may be more error-prone than traditional communication, the framework of ETCS can cope well with this imperfection.

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Available abstract

The operation of railway systems strongly depends on the underlying train control system.ERTMS (European Rail Traffic Management System) is a project launched by the European Union in order to increase the interoperability of the national railway systems in Europe.One of the two main components of ERTMS is GSM-R, a wireless communication standard based on GSM.In this paper, we focus on the stochastic nature of GSM-R communication failures and their possible impact on railway capacity.Firstly, we will compare the results of our newly introduced model to the results obtained with a standard blocking time model, applied by a couple of European railway infrastructure managers.After this validation of our model, we will then use the stochastic approach in order to evaluate the impact of GSM-R communication on the railway operation and railway capacity with ETCS level 3. We can show that ETCS level 3 indeed leads to a capacity increase in our setting.So, while a single GSM-R message may be more error-prone than traditional communication, the framework of ETCS can cope well with this imperfection.

Key concepts: GSM, Interoperability, Computer science, Blocking (statistics), European union, Order (exchange), Wireless, Communications system

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