LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability Analysis

Communication-Based Train Control (CBTC) system is a critical signal system to ensure rail transit’s safe operation. Compared with the train-ground CBTC system, the train control system based on train-to-train (T2T) communication has the advantages of fast response speed, simple structure, and low o...

Full description

Bibliographic Details
Main Authors: Hao Liang, Hongli Zhao, Shuo Wang, Yong Zhang
Format: Article
Language:English
Published: Hindawi-Wiley 2020-01-01
Series:Wireless Communications and Mobile Computing
Online Access:http://dx.doi.org/10.1155/2020/8893631
id doaj-2f849fd56ebc45d680fff2eed78a1da0
record_format Article
spelling doaj-2f849fd56ebc45d680fff2eed78a1da02021-01-11T02:21:39ZengHindawi-WileyWireless Communications and Mobile Computing1530-86772020-01-01202010.1155/2020/8893631LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability AnalysisHao Liang0Hongli Zhao1Shuo Wang2Yong Zhang3School of Electronics and InformationState Key Laboratory of Rail Traffic Control and SafetySchool of Electronics and InformationSchool of Electronics and InformationCommunication-Based Train Control (CBTC) system is a critical signal system to ensure rail transit’s safe operation. Compared with the train-ground CBTC system, the train control system based on train-to-train (T2T) communication has the advantages of fast response speed, simple structure, and low operating cost. As the core part of the train control system based on T2T communication, the reliability of the data communication system (DCS) is of great significance to ensure the train’s safe and efficient operation. According to the T2T communication system requirements, this paper adopts Long-Term Evolution-Unlicensed (LTE-U) technology to design the DCS structure and establishes the reliability model of the communication system based on Deterministic and Stochastic Petri Nets (DSPN). Based on testing the real line’s communication performance parameters, the DSPN model is simulated and solved by π-tool, and the reliability index of the system is obtained. The research results show that the LTE-U-based T2T communication system designed in this paper meets the train control system’s needs for communication transmission. This paper’s reliability evaluation method can complete the reliability modeling of train control DCS based on T2T communication. The research in this paper will provide a strong practical and theoretical basis for the design and optimization of train control DCS based on T2T communication.http://dx.doi.org/10.1155/2020/8893631
collection DOAJ
language English
format Article
sources DOAJ
author Hao Liang
Hongli Zhao
Shuo Wang
Yong Zhang
spellingShingle Hao Liang
Hongli Zhao
Shuo Wang
Yong Zhang
LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability Analysis
Wireless Communications and Mobile Computing
author_facet Hao Liang
Hongli Zhao
Shuo Wang
Yong Zhang
author_sort Hao Liang
title LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability Analysis
title_short LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability Analysis
title_full LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability Analysis
title_fullStr LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability Analysis
title_full_unstemmed LTE-U based Train to Train Communication System in CBTC: System Desin and Reliability Analysis
title_sort lte-u based train to train communication system in cbtc: system desin and reliability analysis
publisher Hindawi-Wiley
series Wireless Communications and Mobile Computing
issn 1530-8677
publishDate 2020-01-01
description Communication-Based Train Control (CBTC) system is a critical signal system to ensure rail transit’s safe operation. Compared with the train-ground CBTC system, the train control system based on train-to-train (T2T) communication has the advantages of fast response speed, simple structure, and low operating cost. As the core part of the train control system based on T2T communication, the reliability of the data communication system (DCS) is of great significance to ensure the train’s safe and efficient operation. According to the T2T communication system requirements, this paper adopts Long-Term Evolution-Unlicensed (LTE-U) technology to design the DCS structure and establishes the reliability model of the communication system based on Deterministic and Stochastic Petri Nets (DSPN). Based on testing the real line’s communication performance parameters, the DSPN model is simulated and solved by π-tool, and the reliability index of the system is obtained. The research results show that the LTE-U-based T2T communication system designed in this paper meets the train control system’s needs for communication transmission. This paper’s reliability evaluation method can complete the reliability modeling of train control DCS based on T2T communication. The research in this paper will provide a strong practical and theoretical basis for the design and optimization of train control DCS based on T2T communication.
url http://dx.doi.org/10.1155/2020/8893631
work_keys_str_mv AT haoliang lteubasedtraintotraincommunicationsystemincbtcsystemdesinandreliabilityanalysis
AT honglizhao lteubasedtraintotraincommunicationsystemincbtcsystemdesinandreliabilityanalysis
AT shuowang lteubasedtraintotraincommunicationsystemincbtcsystemdesinandreliabilityanalysis
AT yongzhang lteubasedtraintotraincommunicationsystemincbtcsystemdesinandreliabilityanalysis
_version_ 1714949860365434880