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基于工频磁特征的近岸海底电缆UAV航磁定位方法OA

Unmanned Aerial Vehicle Aeromagnetic Positioning Method for Nearshore Submarine Cables Based on Power Frequency Magnetic Characteristics

中文摘要英文摘要

针对近岸海底电缆"最后一公里"高精度探测与定位的技术瓶颈,文中提出一种融合工频磁场特征解析的无人机(UAV)航磁综合探测方法.首先建立海底电缆工频磁场正演模型,通过数值仿真揭示电缆工频磁特征信号的传播衰减规律;其次,创新性地构建基于工频磁特征的频域信号提取算法,有效提升强环境噪声背景下弱磁信号的识别精度;继而提出结合地磁方向的逆向解析定位方法,实现海底电缆走向的米级空间反演.实验采用自主研发的旋翼式超低空(飞行高度 1 m)磁测UAV系统,在温州近岸海域开展实测验证.结果表明:系统在潮间带复杂地形条件下可高效完成工频磁特征航空磁探测作业,通过对比分析发现,工频特征定位法较常规磁异常定位法在近岸浅水区具有显著优势,其定位误差不超过 1.8 m,可准确追踪电缆埋设路径.文中研究为海底电缆工程巡检与定位提供了新的技术范式.

Aiming at the technical bottleneck of high-precision detection and positioning of the"last mile"of nearshore submarine cables,this study proposed a comprehensive unmanned aerial vehicle(UAV)aeromagnetic detection method integrating the analysis of power frequency magnetic field characteristics.Firstly,a forward model of the power frequency magnetic field of submarine cables was established,and the propagation and attenuation law of the power frequency magnetic characteristic signal of the cables was revealed through numerical simulation.Secondly,an innovative frequency-domain signal extraction algorithm based on power frequency magnetic characteristics was constructed,effectively improving the recognition accuracy of weak magnetic signals in the background of strong environmental noise.Then,a reverse analytical positioning method combined with the geomagnetic direction was proposed to achieve the meter-level spatial inversion of the direction of submarine cables.The experiment adopted the self-developed ultra-low-altitude(flight altitude of 1 meter)rotorcraft UAV magnetic detection system to conduct actual measurement and verification in the coastal waters of Wenzhou City.The results show that the system effectively conducts aerial magnetic detection operations of power frequency magnetic characteristics under the complex terrain conditions of the intertidal zone.Through comparative analysis,it is found that the power frequency characteristic positioning method has significant advantages over the conventional magnetic anomaly positioning method in the nearshore shallow water area.Its positioning error does not exceed 1.8 meters,and it can accurately track the cable burial path.This research provides a new technical paradigm for the inspection and positioning of submarine cable projects.

孙运坤;李尤;曹向东;陈美;张雷;李明跃;赵杰;韩琦

浙江华东岩土勘察设计研究院有限公司,浙江 杭州,310000哈尔滨工业大学 计算学部,黑龙江 哈尔滨,150001中地装(北京)地质仪器厂有限公司,北京,100015浙江华东岩土勘察设计研究院有限公司,浙江 杭州,310000浙江华东岩土勘察设计研究院有限公司,浙江 杭州,310000中地装(北京)地质仪器厂有限公司,北京,100015中地装(北京)地质仪器厂有限公司,北京,100015哈尔滨工业大学 计算学部,黑龙江 哈尔滨,150001

军事科技

超低空航磁海底电缆探测旋翼无人机工频磁特征

ultra-low altitude aeromagnetismsubmarine cable detectionrotorcraft unmanned aerial vehiclepower frequency magnetic characteristic

《水下无人系统学报》 2026 (1)

37-46,10

中国电建集团华东岩土勘测设计研究院有限公司科研基金项目资助(ZKY2024-HDYT-02-04).

10.11993/j.issn.2096-3920.2025-0083

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