802 . 11 n Communication System in presence of Transient Electromagnetic Interferences from the Pantograph-Catenary Contact

This paper presents a susceptibility study of an IEEE 802.11n communication network in an electromagnetic (EM) environment representative of the railway EM environment, which is characterized by the presence of transient EM interferences induced by the sliding contact between the pantograph and the catenary. In Europe, the ground-train communications are currently carried out by the GSM-R communication system, but the next generation of ground-train radio which could be based on OFDM solutions is already discussed. Then, we worked on the susceptibility of OFDM communication signals to the EM transient interferences which are systematically present in the railway EM environment. To achieve this susceptibility analysis, we select an IEEE 802.11n communication network and we analyzed its performances in the presence of transient EM interferences. The transient interferences present in the railway environment, were characterized in the literature as signals of short duration, variable period and broadband. Accordingly, the time interval between the successive transient signals and their time duration were used as main characteristics in order to study their impact on the achieved bit rate of the communications. A set of measurements was performed within a controlled environment to evaluate the performance of the IEEE 802.11n communication network in presence of such interference signals.

[1]  V. Deniau,et al.  Measurements and post-processing for achievement of electromagnetic transient interference models: Application to the signals provided by railway substations , 2012, International Symposium on Electromagnetic Compatibility - EMC EUROPE.

[2]  Fei Sha,et al.  Three types of electromagnetic noise between pantograph and catenary , 2009, 2009 3rd IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications.

[3]  R. Adriano,et al.  Testing of the GSM-R system against electromagnetic disturbances present in the railway environment , 2009, 2009 9th International Conference on Intelligent Transport Systems Telecommunications, (ITST).

[4]  J. Mendizabal,et al.  Characterization of the EM environment of railway spot communication systems , 2008, 2008 IEEE International Symposium on Electromagnetic Compatibility.