High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas Pipeline

【Objective】With the growth of long distance oil and gas pipeline in our country, the optical communication network of oil and gas pipeline valve chamber plays an important role in the intelligent management of oil and gas pipeline. However, as an important basis for evaluating the optimization of op...

Full description

Saved in:
Bibliographic Details
Main Authors: LI Yafeng, QU Baida, LIU Yun, WANG Yunpeng, YAO Yingjing, ZHANG Lei, WANG Jingxiang
Format: Article
Language:zho
Published: 《光通信研究》编辑部 2025-02-01
Series:Guangtongxin yanjiu
Subjects:
Online Access:http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2025.230166
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850191550571610112
author LI Yafeng
QU Baida
LIU Yun
WANG Yunpeng
YAO Yingjing
ZHANG Lei
WANG Jingxiang
author_facet LI Yafeng
QU Baida
LIU Yun
WANG Yunpeng
YAO Yingjing
ZHANG Lei
WANG Jingxiang
author_sort LI Yafeng
collection DOAJ
description 【Objective】With the growth of long distance oil and gas pipeline in our country, the optical communication network of oil and gas pipeline valve chamber plays an important role in the intelligent management of oil and gas pipeline. However, as an important basis for evaluating the optimization of optical communication network services, time delay faces challenges due to issues such as the existing optical communication network in oil and gas pipeline valve chambers and their relatively outdated technological systems. Problems with optical network Delay Measurement (DM) include low automation, long DM operation cycles, and significant impact on the normal operation of the carried services. Therefore, there is an urgent need for a new DM solution.【Methods】Based on the technology of Optical Transport Network (OTN) Optical Service Unit (OSU), a high precision delay calculation method is implemented by using the DM field in OSU frame structure.【Results】Through experimental tests, under various business scenarios and granularity, the high-precision DM mechanism of optical communication network of oil and gas pipeline valve chamber designed in this paper can grasp its delay state in real time under the premise of ensuring DM accuracy, no manual field operation and normal business operation.【Conclusion】It is proved that the high-precision DM mechanism based on OTN OSU can provide strong support for the optimization and guarantee of service delay in optical communication networks within oil and gas pipeline valve chambers.
format Article
id doaj-art-c526bae632b14e3abe67bbe216d345d9
institution OA Journals
issn 1005-8788
language zho
publishDate 2025-02-01
publisher 《光通信研究》编辑部
record_format Article
series Guangtongxin yanjiu
spelling doaj-art-c526bae632b14e3abe67bbe216d345d92025-08-20T02:14:53Zzho《光通信研究》编辑部Guangtongxin yanjiu1005-87882025-02-01230166-0582630022High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas PipelineLI YafengQU BaidaLIU YunWANG YunpengYAO YingjingZHANG LeiWANG Jingxiang【Objective】With the growth of long distance oil and gas pipeline in our country, the optical communication network of oil and gas pipeline valve chamber plays an important role in the intelligent management of oil and gas pipeline. However, as an important basis for evaluating the optimization of optical communication network services, time delay faces challenges due to issues such as the existing optical communication network in oil and gas pipeline valve chambers and their relatively outdated technological systems. Problems with optical network Delay Measurement (DM) include low automation, long DM operation cycles, and significant impact on the normal operation of the carried services. Therefore, there is an urgent need for a new DM solution.【Methods】Based on the technology of Optical Transport Network (OTN) Optical Service Unit (OSU), a high precision delay calculation method is implemented by using the DM field in OSU frame structure.【Results】Through experimental tests, under various business scenarios and granularity, the high-precision DM mechanism of optical communication network of oil and gas pipeline valve chamber designed in this paper can grasp its delay state in real time under the premise of ensuring DM accuracy, no manual field operation and normal business operation.【Conclusion】It is proved that the high-precision DM mechanism based on OTN OSU can provide strong support for the optimization and guarantee of service delay in optical communication networks within oil and gas pipeline valve chambers.http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2025.230166DMOTNOSUlong-distance oil and gas pipeline communication networkvalve chamber communication network
spellingShingle LI Yafeng
QU Baida
LIU Yun
WANG Yunpeng
YAO Yingjing
ZHANG Lei
WANG Jingxiang
High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas Pipeline
Guangtongxin yanjiu
DM
OTN
OSU
long-distance oil and gas pipeline communication network
valve chamber communication network
title High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas Pipeline
title_full High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas Pipeline
title_fullStr High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas Pipeline
title_full_unstemmed High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas Pipeline
title_short High Precision Delay Measurement Mechanism of Optical Communication Network in Valve Chamber of Oil and Gas Pipeline
title_sort high precision delay measurement mechanism of optical communication network in valve chamber of oil and gas pipeline
topic DM
OTN
OSU
long-distance oil and gas pipeline communication network
valve chamber communication network
url http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2025.230166
work_keys_str_mv AT liyafeng highprecisiondelaymeasurementmechanismofopticalcommunicationnetworkinvalvechamberofoilandgaspipeline
AT qubaida highprecisiondelaymeasurementmechanismofopticalcommunicationnetworkinvalvechamberofoilandgaspipeline
AT liuyun highprecisiondelaymeasurementmechanismofopticalcommunicationnetworkinvalvechamberofoilandgaspipeline
AT wangyunpeng highprecisiondelaymeasurementmechanismofopticalcommunicationnetworkinvalvechamberofoilandgaspipeline
AT yaoyingjing highprecisiondelaymeasurementmechanismofopticalcommunicationnetworkinvalvechamberofoilandgaspipeline
AT zhanglei highprecisiondelaymeasurementmechanismofopticalcommunicationnetworkinvalvechamberofoilandgaspipeline
AT wangjingxiang highprecisiondelaymeasurementmechanismofopticalcommunicationnetworkinvalvechamberofoilandgaspipeline