韩晋, 谢思先, 范坤, 万庭辉, 裘愉涛, 吴银福, 朱志勇. 基于5G通信的配电网自愈控制系统的设计[J]. 电力信息与通信技术, 2025, 23(2): 86-93. DOI: 10.16543/j.2095-641x.electric.power.ict.2025.02.11
引用本文: 韩晋, 谢思先, 范坤, 万庭辉, 裘愉涛, 吴银福, 朱志勇. 基于5G通信的配电网自愈控制系统的设计[J]. 电力信息与通信技术, 2025, 23(2): 86-93. DOI: 10.16543/j.2095-641x.electric.power.ict.2025.02.11
HAN Jin, XIE Sixian, FAN Kun, WAN Tinghui, QIU Yutao, WU Yinfu, ZHU Zhiyong. Design of Self-healing Control System of Distribution Network Based on 5G Communication[J]. Electric Power Information and Communication Technology, 2025, 23(2): 86-93. DOI: 10.16543/j.2095-641x.electric.power.ict.2025.02.11
Citation: HAN Jin, XIE Sixian, FAN Kun, WAN Tinghui, QIU Yutao, WU Yinfu, ZHU Zhiyong. Design of Self-healing Control System of Distribution Network Based on 5G Communication[J]. Electric Power Information and Communication Technology, 2025, 23(2): 86-93. DOI: 10.16543/j.2095-641x.electric.power.ict.2025.02.11

基于5G通信的配电网自愈控制系统的设计

Design of Self-healing Control System of Distribution Network Based on 5G Communication

  • 摘要: 根据5G通信的特点,分析应用于5G通信的自愈系统存在的问题。从数据实时性、系统可维护性和通信流量3个方面,对自愈系统装置之间的点对点连接、手拉手和经自愈开关装置转发3种通信拓扑形式进行分析,并提出了一种基于5G通信的自愈控制系统解决方案。针对自愈数据因为5G延时抖动造成的数据时效性问题对自愈逻辑的影响进行了分析,提出了采用带绝对时标的方式区分有效数据,实现多源数据同步。通过整合在线监视和运维功能,为自愈系统的发展和优化提供了新的思路和方向。最后,对所提方案在5G商用环境下进行了RTDS建模仿真验证,验证了此方案在任意自愈开关个数时可以实现百毫秒级的负荷转供。

     

    Abstract: Based on the characteristics of 5G communication, the problems of self-healing systems applied to 5G communication are analyzed. From the aspects of real-time data, system maintainability, and communication traffic, this paper analyzes three communication topologies of self-healing system devices: point-to-point connections, hand-in-hand connections, and forwarding through self-healing switch devices. A self-healing control system solution based on 5G communication is proposed. An analysis was conducted on the impact of data timeliness issues caused by 5G delay jitter on self-healing logic. A method with absolute time scale was proposed to distinguish effective data and achieve multi-source data synchronization. By integrating online monitoring and operation and maintenance functions, it provides a new idea and direction for the development and optimization of self-healing system. Finally, RTDS modeling and simulation verification were conducted on the proposed scheme in a 5G commercial environment, confirming that this scheme can achieve load transfer in the hundreds of milliseconds at any number of self-healing switches.

     

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