Research on the application of fgOTN in the new electric power system

With the development of new electric power systems, various emerging businesses are growing rapidly, which puts higher demands on the service granularity, bandwidth, latency, and reliability of communication transmission networks. Compared to traditional synchronous digital hierarchy (SDH) and optic...

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Main Authors: CHEN Sunsheng, WANG Yi, LIN Mingqi, LU Shaobin, YANG Qihan, ZHENG Jian
Format: Article
Language:zho
Published: Beijing Xintong Media Co., Ltd 2025-01-01
Series:Dianxin kexue
Subjects:
Online Access:http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2025018/
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author CHEN Sunsheng
WANG Yi
LIN Mingqi
LU Shaobin
YANG Qihan
ZHENG Jian
author_facet CHEN Sunsheng
WANG Yi
LIN Mingqi
LU Shaobin
YANG Qihan
ZHENG Jian
author_sort CHEN Sunsheng
collection DOAJ
description With the development of new electric power systems, various emerging businesses are growing rapidly, which puts higher demands on the service granularity, bandwidth, latency, and reliability of communication transmission networks. Compared to traditional synchronous digital hierarchy (SDH) and optical transport network (OTN) technologies, fine grain optical transport network (fgOTN) technology is more suitable for the current development needs of new electric power systems. Based on this background, the standard evolution of fgOTN was described, the technical principles of fgOTN were elaborated, the application advantages of fgOTN were introduced. Finally, the adaptability of fgOTN to power system services was discussed and experimentally tested, and the test results were analyzed. The research aims to provide data references and insights for the future promotion and application of fgOTN in the electric power system.
format Article
id doaj-art-9104886153734014bc3c9ca61eca331f
institution Kabale University
issn 1000-0801
language zho
publishDate 2025-01-01
publisher Beijing Xintong Media Co., Ltd
record_format Article
series Dianxin kexue
spelling doaj-art-9104886153734014bc3c9ca61eca331f2025-02-08T19:00:26ZzhoBeijing Xintong Media Co., LtdDianxin kexue1000-08012025-01-0141546482012058Research on the application of fgOTN in the new electric power systemCHEN SunshengWANG YiLIN MingqiLU ShaobinYANG QihanZHENG JianWith the development of new electric power systems, various emerging businesses are growing rapidly, which puts higher demands on the service granularity, bandwidth, latency, and reliability of communication transmission networks. Compared to traditional synchronous digital hierarchy (SDH) and optical transport network (OTN) technologies, fine grain optical transport network (fgOTN) technology is more suitable for the current development needs of new electric power systems. Based on this background, the standard evolution of fgOTN was described, the technical principles of fgOTN were elaborated, the application advantages of fgOTN were introduced. Finally, the adaptability of fgOTN to power system services was discussed and experimentally tested, and the test results were analyzed. The research aims to provide data references and insights for the future promotion and application of fgOTN in the electric power system.http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2025018/fgOTNelectric power systemadaptability
spellingShingle CHEN Sunsheng
WANG Yi
LIN Mingqi
LU Shaobin
YANG Qihan
ZHENG Jian
Research on the application of fgOTN in the new electric power system
Dianxin kexue
fgOTN
electric power system
adaptability
title Research on the application of fgOTN in the new electric power system
title_full Research on the application of fgOTN in the new electric power system
title_fullStr Research on the application of fgOTN in the new electric power system
title_full_unstemmed Research on the application of fgOTN in the new electric power system
title_short Research on the application of fgOTN in the new electric power system
title_sort research on the application of fgotn in the new electric power system
topic fgOTN
electric power system
adaptability
url http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2025018/
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