DocumentCode :
3601586
Title :
Measurements and Analysis of Large-Scale Fading Characteristics in Curved Subway Tunnels at 920 MHz, 2400 MHz, and 5705 MHz
Author :
Ke Guan ; Bo Ai ; Zhangdui Zhong ; Lopez, Carlos F. ; Lei Zhang ; Briso-Rodriguez, Cesar ; Hrovat, Andrej ; Bei Zhang ; Ruisi He ; Tao Tang
Author_Institution :
State Key Lab. of Rail Traffic Control & Safety, Beijing Jiaotong Univ., Beijing, China
Volume :
16
Issue :
5
fYear :
2015
Firstpage :
2393
Lastpage :
2405
Abstract :
Wave propagation characteristics in curved tunnels are of importance for designing reliable communications in subway systems. This paper presents the extensive propagation measurements conducted in two typical types of subway tunnels - traditional arched “Type I” tunnel and modern arched “Type II” tunnel - with 300- and 500-m radii of curvature with different configurations - horizontal and vertical polarizations at 920, 2400, and 5705 MHz, respectively. Based on the measurements, statistical metrics of propagation loss and shadow fading (path-loss exponent, shadow fading distribution, autocorrelation, and crosscorrelation) in all the measurement cases are extracted. Then, the large-scale fading characteristics in the curved subway tunnels are compared with the cases of road and railway tunnels, the other main rail traffic scenarios, and some “typical” scenarios to give a comprehensive insight into the propagation in various scenarios where the intelligent transportation systems are deployed. Moreover, for each of the large-scale fading parameters, extensive analysis and discussions are made to reflect the physical laws behind the observations. The quantitative results and findings are useful to realize intelligent transportation systems in the subway system.
Keywords :
UHF radio propagation; fading; intelligent transportation systems; microwave propagation; railway communication; telecommunication network reliability; tunnels; underground communication; arched type I tunnel; arched type II tunnel; autocorrelation; crosscorrelation; curved subway tunnels; fading parameters; frequency 2400 MHz; frequency 5705 MHz; frequency 920 MHz; horizontal polarizations; intelligent transportation systems; large-scale fading characteristics; pathloss exponent; propagation loss; propagation measurements; radius 300 m; radius 500 m; rail traffic scenarios; railway tunnels; shadow fading distribution; subway systems; vertical polarizations; wave propagation characteristics; Antenna measurements; Correlation; Fading; Frequency measurement; Loss measurement; Mathematical model; Propagation losses; Propagation loss; propagation measurement; shadow fading; subway tunnel;
fLanguage :
English
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1524-9050
Type :
jour
DOI :
10.1109/TITS.2015.2404851
Filename :
7059237
Link To Document :
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