首页|基于光纤无线融合的监测通信一体化系统

基于光纤无线融合的监测通信一体化系统

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针对当前城市受限空间的监测难题,旨在探索基于光纤无线融合的监测通信一体化系统,通过融合微纳集成单元的通信供能一体化光缆及多参量监测应用,提出了一种新型的能信共传解决方案.开展了三部分内容研究,涵盖光纤长距离能信共传、光电转换、融合磁谐振无线供能等关键技术研究,以及相关的系统集成与应用探索.通过深入研究高效率光电转换技术、基于磁谐振的短距无线供能技术、通信供能一体化光缆的设计与研制,构建了一套完整的理论体系并实验验证,为光纤与无线技术融合提供了新的研究方向和实践案例.研究成果不仅拓展了光纤通信和无线传感技术的应用领域,而且为电网、城市基础设施监测等关键领域提供了创新的技术支撑和解决方案.
Integrated Monitoring and Communication System Based on Fiber Wireless Fusion
Addressing the current monitoring challenges in urban confined spaces,this study aims to explore an integrated monitoring and communication system based on fiber-wireless convergence.By integrating micro-nano units into a unified optical cable for communication and power supply,and applying multi-parameter monitoring,a novel solution for simultaneous energy and signal transmission is proposed.The research consists of three main parts:long-distance fiber-optic energy and signal transmission,photoelectric conversion,and the integration of magnetic resonance wireless power transfer.Additionally,it includes system integration and application exploration of these key technologies.Through in-depth research on high-efficiency photoelectric conversion technology,short-distance wireless power transfer based on magnetic resonance,and the design and development of a unified optical cable for communication and power supply,this study constructs a comprehensive theoretical framework and provides experimental validation.This research offers new directions and practical cases for integrating of fiber-optic and wireless technologies.The outcomes expand the application fields of fiber-optic communication and wireless sensing technologies and provide innovative technical support and solutions for critical areas such as power grids and urban infrastructure monitoring.

fiber energy transmissionfiber optic communicationwireless chargingenergy and signal transmission

张伟、吴季航、杜雨鑫、谢洪平、林冬阳、范舟

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北京邮电大学 电子工程学院,北京 100876

国网江苏省电力有限公司,江苏 南京 210000

国网江苏省电力有限公司 建设分公司,江苏 南京 210000

光纤传能 光纤通信 无线充电 能信共传

2025

测试技术学报
中国兵工学会

测试技术学报

影响因子:0.305
ISSN:1671-7449
年,卷(期):2025.39(1)