人民长江 ›› 2025, Vol. 56 ›› Issue (5): 223-230.doi: 10.16232/j.cnki.1001-4179.2025.05.031

• • 上一篇    

F5G 技术在滇中引水工程通信网络中的应用研究

范璐璐,潘金鹤,麦珊珊,王凌航,吴帆,李奕柏   

  • 收稿日期:2024-05-09 出版日期:2025-05-28 发布日期:2025-05-28

Research on application of F5G technology in communication network of Central Yunnan Water Diversion Project

FAN Lulu,PAN Jinhe,MAI Shanshan,WANG Linghang,WU Fan,LI Yibai   

  • Received:2024-05-09 Online:2025-05-28 Published:2025-05-28

摘要: 通信系统作为基础支撑网络,对引调水工程的智慧化运行管理具有关键作用。为解决数字孪生时代引调水工程通信网络所面临的诸多问题,满足其对通信网络的传输需求,提出利用 F5G 技术来提升工程通信网络的承载能力,并通过 OSU 和全光 PON 两种关键技术来构建引调水工程通信网络。以滇中引水工程为研究对象,从网络架构、网络节点和组网方式 3 个方面,全面系统地部署了工程通信网络,并根据实际业务承载需求,提出了 F5G + 多网融合、F5G + 远程控制、F5G + 融合通信和 FC + 通感一体化 4 种应用场景。研究结果表明:F5G 技术能够有效解决传统通信网络在承载新业务方面存在的业务与网络不匹配、智能性不足等问题,实现滇中引水工程数字孪生业务的智慧化承载。研究成果为构建高速、灵活、智能和安全引调水通信网络提供了技术思路和方法,可为数字孪生引调水工程建设提供借鉴。

关键词: 第五代固定网络 (F5G), 光业务单元 (OSU), 无源光纤网络 (PON), 全光网络, 滇中引水工程

Abstract: As a fundamental supporting network, the communication system plays a crucial role in the intelligent operation and management of water diversion and transfer projects. To solve problems faced by the communication network of water diversion and diversion projects in the digital twin era and meet their transmission requirements, we proposed to utilize F5G technology to enhance the carrying capacity of the engineering communication network, and to construct a communication network of water diversion and diversion projects through two key technologies, OSU and all-optical PON. Taking the water diversion project in Central Yunnan as the research object, the engineering communication network was comprehensively and systematically deployed from three aspects: network architecture, network nodes and networking mode. According to the actual business carrying requirements, four application scenarios, namely F5G+multi-network convergence, F5G+remote control, F5G+converged communication and F5G+integrated communication and sensing, were proposed. The research results show that F5G technology can effectively solve the problems such as mismatch between services and networks and insufficient intelligence existing in traditional communication networks when supporting new services, and realize the intelligent carrying of digital twin services for the Central Yunnan Water Diversion Project. The research results can provide technical ideas and methods for building a high-speed, flexible, intelligent and secure communication network for water diversion and transfer, and offer references for the construction of water diversion and transfer projects in the digital twin era.

Key words: F5G, optical service unit (OSU), passive optical network (PON), all optical network, Central Yunnan Water Diversion Project