Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder Topology

A highly reliable ladder redundant structure networking scheme applied to train communication network was constructed, and the fault protection and redundant switching mechanism of the network were analyzed. For complex TCN such as ladder networks, a simplified dynamic fault tree analysis(DFTA) meth...

Full description

Saved in:
Bibliographic Details
Main Authors: Tao GUO, Ping SHEN, Lide WANG, Xiaobo NIE, Jie JIAN
Format: Article
Language:zho
Published: Editorial Department of Electric Drive for Locomotives 2020-03-01
Series:机车电传动
Subjects:
Online Access:http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2020.02.017
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849728752123117568
author Tao GUO
Ping SHEN
Lide WANG
Xiaobo NIE
Jie JIAN
author_facet Tao GUO
Ping SHEN
Lide WANG
Xiaobo NIE
Jie JIAN
author_sort Tao GUO
collection DOAJ
description A highly reliable ladder redundant structure networking scheme applied to train communication network was constructed, and the fault protection and redundant switching mechanism of the network were analyzed. For complex TCN such as ladder networks, a simplified dynamic fault tree analysis(DFTA) method based on K-terminal connectivity detection was proposed, and a binary decision diagram(BDD) was used to simplify the fault tree calculation process. The algorithm proposed comprehensively considered the system structure and dynamic repair of devices in the network and the influence of the topology on the network reliability, which simplified the modeling and calculation process of the fault tree model. The paper analyzed the proposed algorithm for the reliability of the trapezoidal redundant structure for specific examples. The results show that the ladder structure has an increase in the mean time between failures by 1 513.32 h compared to the use of PRP and 5 034.61 h longer than the use of HSR under the same scenario, which significantly improved the reliability. The networking scheme constructed in this paper and the proposed reliability modeling method provided new ideas for the structural design and reliability modeling analysis of the highly reliable train communication network.
format Article
id doaj-art-262a6ad648b047d69b78dac69ecd3d79
institution DOAJ
issn 1000-128X
language zho
publishDate 2020-03-01
publisher Editorial Department of Electric Drive for Locomotives
record_format Article
series 机车电传动
spelling doaj-art-262a6ad648b047d69b78dac69ecd3d792025-08-20T03:09:27ZzhoEditorial Department of Electric Drive for Locomotives机车电传动1000-128X2020-03-01818720921310Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder TopologyTao GUOPing SHENLide WANGXiaobo NIEJie JIANA highly reliable ladder redundant structure networking scheme applied to train communication network was constructed, and the fault protection and redundant switching mechanism of the network were analyzed. For complex TCN such as ladder networks, a simplified dynamic fault tree analysis(DFTA) method based on K-terminal connectivity detection was proposed, and a binary decision diagram(BDD) was used to simplify the fault tree calculation process. The algorithm proposed comprehensively considered the system structure and dynamic repair of devices in the network and the influence of the topology on the network reliability, which simplified the modeling and calculation process of the fault tree model. The paper analyzed the proposed algorithm for the reliability of the trapezoidal redundant structure for specific examples. The results show that the ladder structure has an increase in the mean time between failures by 1 513.32 h compared to the use of PRP and 5 034.61 h longer than the use of HSR under the same scenario, which significantly improved the reliability. The networking scheme constructed in this paper and the proposed reliability modeling method provided new ideas for the structural design and reliability modeling analysis of the highly reliable train communication network.http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2020.02.017high-speed trainEthernetDFTAK-terminal connectivityladderTCN reliability
spellingShingle Tao GUO
Ping SHEN
Lide WANG
Xiaobo NIE
Jie JIAN
Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder Topology
机车电传动
high-speed train
Ethernet
DFTA
K-terminal connectivity
ladder
TCN reliability
title Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder Topology
title_full Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder Topology
title_fullStr Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder Topology
title_full_unstemmed Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder Topology
title_short Analysis of Redundant Structure of Highly Reliable Train Communication Network Based on Ladder Topology
title_sort analysis of redundant structure of highly reliable train communication network based on ladder topology
topic high-speed train
Ethernet
DFTA
K-terminal connectivity
ladder
TCN reliability
url http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2020.02.017
work_keys_str_mv AT taoguo analysisofredundantstructureofhighlyreliabletraincommunicationnetworkbasedonladdertopology
AT pingshen analysisofredundantstructureofhighlyreliabletraincommunicationnetworkbasedonladdertopology
AT lidewang analysisofredundantstructureofhighlyreliabletraincommunicationnetworkbasedonladdertopology
AT xiaobonie analysisofredundantstructureofhighlyreliabletraincommunicationnetworkbasedonladdertopology
AT jiejian analysisofredundantstructureofhighlyreliabletraincommunicationnetworkbasedonladdertopology