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Research on the Wireless Communication System for Multi-station Flat Shunting |
WANG Guoyu |
Wuhan Railway Siyuan Engineering Consulting Co. Ltd, Wuhan, Hubei 430063, China |
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Abstract Research purposes: In some local railways, enterprises or logistics park special lines and port distribution railways, flat shunting operations at multiple stations and transfer train running operation coexist. The two kinds of operations require the corresponding wireless communication system to provide technical support. At present, the scheme of setting up both a flat shunting digital wireless communication system and a special mobile communication system is mostly adopted, which can meet the requirements, but the investment is relatively high. In order to save the project construction cost and simplify the equipment configuration, it is very necessary to study adopting a set of wireless communication system to meet the needs of flat shunting communication service and wireless dispatching communication service of multiple shunting stations and transfer train running sections at the same time. Research conclusions: (1) The wireless communication system for multi-station flat shunting follows the technical system and working frequency band of the existing flat shunting digital wireless communication system, which accords with current technology policy. (2) Multiple digital repeaters based on digital mobile radio (DMR) co-frequency relay technology are adopted to expand the wireless signal originally used for covering flat shunting operation in the station to each station and section within the operation scope by means of IP interconnection, so as to realize unified wireless signal coverage in multiple shunting stations and transfer train running sections and eliminate wireless signal blind areas. (3) Through simulation, it is verified that the audio receiving and demodulation circuit of the system terminal equipment can separate the co-frequency interference signal and suppress the co-frequency interference by using ICA algorithm. (4) The research results can provide reference for the engineering design of local railways, enterprises or logistics park special lines and port distribution railways, as well as the manufacturing of wireless communication system equipment for multi-station flat shunting.
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Received: 18 March 2022
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[1] |
彭维英.直流远供电源在既有铁路GSM-R改造工程的应用研究[J]. 铁路通信信号工程技术,2018(4):28-32.Peng Weiying. Application of DC Remote Power Supply in GSM-R Reconstruction Project of Existing Railways[J]. Railway Signalling & Communication Engineering,2018(4):28-32.
|
[2] |
关振鹏. 土耳其安伊高铁项目GSM-R系统应用研究[J]. 铁道建筑技术,2018(9):109-113.Guan Zhenpeng. Research Based on the Practice of GSM-R System at Turkish Ankara-Istanbul High-speed Railway[J]. Railway Construction Technology,2018(9):109-113.
|
[3] |
宗天博. 无线列调改GSM-R系统过渡方案的优化和探讨[J]. 高速铁路技术,2016(6):60-63.Zong Tianbo. Optimization and Discussion of the Transition Program for the Transformation from the Train Radio Dispatching System into the GSM-R System[J]. High Speed Railway Technology, 2016(6):60-63.
|
[4] |
王国雨,张从光,盛勇,等. 一种用于多站/场调车的无线通信系统:中国,CN212861470U[P]. 2021-04-02.Wang Guoyu,Zhang Congguang,Sheng Yong,etc. A Wireless Communication System for Multiple Station/yard Shunting:China,CN212861470U[P]. 2021-04-02.
|
[5] |
TB/T 2834—2016,铁路无线调车灯显设备[S].TB/T 2834—2016,Railway Radio Shunting Equipment [S].
|
[6] |
付静. 短消息功能寻址业务的研究[D]. 北京:北京交通大学,2007.Fu Jing. Research on Short Message Functional Addressing Service[D]. Beijing:Beijing Jiaotong University,2007.
|
[7] |
郭群. 浅谈GSM-R在铁路无线列调中的应用[J]. 大众科技,2011(4):28-29.Guo Qun. Simple Discussion on Application of GSM-R in Railway Wireless Train Dispatching[J]. Popular Science & Technology, 2011(4):28-29.
|
[8] |
谢永军. 基于DMR数字集群通信技术的研究[D]. 北京:北京邮电大学,2009.Xie Yongjun. The Study of Digital Trunking Communication Technology Based DMR[D]. Beijing: Beijing University of Posts and Telecommunications, 2009.
|
|
|
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