首页|长距离光纤频率级联传递技术发展现状及其在电力系统中的应用

长距离光纤频率级联传递技术发展现状及其在电力系统中的应用

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我国电力系统自动化技术与智能电网的建设与发展对长距离时频传递精度与可靠性提出更高需求.地基光纤授时由于其传输媒介具有抗干扰能力强和抗毁性高等优点,结合级联传递技术,可为长距离、高稳定、高可靠的频率传递提供坚实保障.文章详细总结分析了近些年国内外光纤频率级联传递系统架构和发展现状,并对未来长距离光纤频率传递技术的发展趋势及其在电力系统中的应用前景进行展望,为天地互备的时频同步网建设提供支撑.
Development Status of Long-distance Optical Fiber Frequency Cascaded Transmission Technology and Its Application in Power System
The establishment and growth of China's power system automation technology and smart grid necessitate enhanced precision and dependability in long-distance time-frequency transmission.Ground-based optical fiber timing has the advantages of strong anti-interference ability and high invulnerability due to its transmission medium.Combined with cascaded transmission technology,it can provide a solid guarantee for long-distance,high-stability and high-reliability frequency transmission.This paper detailly summarizes and analyzes the architecture and development status of optical fiber frequency cascaded transmission system at home and abroad in recent years,and looks forward to the future development trend of long-distance optical fiber frequency transmission technology and its application prospect in the power system,which will provide support for the construction of time-frequency synchronization network with satellite-earth mutual backup.

optical fibercascaded transmissiontime-frequency synchronizationsmart grid

王晗悦、徐鹏、宋鸽、李烁、刘涛、刘晨霞

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华北电力大学 电子与通信工程系,河北省 保定市 071003

国网江苏省电力有限公司 泰州供电公司,江苏省 泰州市 225300

华北电力大学 河北省电力物联网技术重点实验室,河北省 保定市 071003

光纤 级联传递 时频同步 智能电网

中央高校基本科研业务费专项信息光子学与光通信国家重点实验室(北京邮电大学)开放基金河北省省级科技计划

2022MS076IPOC2022A05SZX2020034

2024

电力信息与通信技术
中国电力科学研究院

电力信息与通信技术

CSTPCD
影响因子:0.699
ISSN:1672-4844
年,卷(期):2024.22(6)
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