渔业现代化 ›› 2025, Vol. 52 ›› Issue (5): 1-11. doi: 10.26958/j.cnki.1007-9580.2025.05.001

• •    下一篇

成像声呐在渔业领域的应用进展

张俊1,2,3 ,孙铭帅1,2,3 ,王欢欢1 ,李斌4 ,孔啸兰1,2,3 ,陈作志1,2,3∗
(1 中国水产科学研究院南海水产研究所,广东 广州 510300;
2 农业农村部外海渔业可持续利用重点实验室,广东 广州 510300;
3 中国水产科学研究院南海渔业资源与环境大数据重点实验室,广东 广州 510300;
4 福建理工大学智慧海洋科学技术学院,福建 福州 350118)
  

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  • 出版日期:2025-10-20 发布日期:2025-10-28
  • 通讯作者: 陈作志(1978–),研究员,农学博士,研究方向:渔业资源和海洋生态。E-mail: zzchen2000@163.com
  • 作者简介:张俊(1984–),男,副研究员,理学博士,研究方向:海洋渔业资源。E-mail: zhangjun@scsfri.ac.cn

  • 基金资助:
    广东省海洋经济发展专项(粤自然资合[2024]23号)

Application progress of imaging sonar in fishery field

ZHANG Jun 1,2,3 ,SUN Mingshuai 1,2,3 ,WANG Huanhuan 1,2,3 ,LI Bin 4 ,KONG Xiaolan 1,2,3 ,CHEN Zuozhi 1,2,3∗
(1 South China Sea Fisheries Research Institute,Chinese Academy of Fishery Sciences,Guangzhou 510300, Guangdong,China;
2 Key Laboratory for Sustainable Utilization of Open-sea Fishery,Ministry of Agriculture and Rural Affairs,
Guangzhou 510300,Guangdong,China;
3 Key Laboratory of Big Data for South China Sea Fishery Resources and Environment,
Chinese Academy of Fishery Sciences,Guangzhou 510300,Guangdong,China;
4 School of Smart Marine Science and Technology,Fujian University of Technology,Fuzhou 350118,Fujian,China)
  

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  • Online:2025-10-20 Published:2025-10-28

摘要: 成像声呐作为现代渔业资源监测与评估的重要工具,尽管面临环境复杂性、分辨率限制以及大规模数据处理等挑战,但在渔业资源调查、鱼类行为分析及栖息地保护等方面展现了巨大的潜力。本研究系统总结了成像声呐技术在渔业领域的应用进展,深入分析了现存挑战,并对未来技术发展进行了展望。重点关注了复杂和敏感栖息地监测、低可视度环境中的目标探测、鱼类行为分析以及物种数量估计等多个应用场景,全面梳理了成像声呐在渔业领域应用的国内外研究现状。在此基础上,从提升分辨率、开发自动化数据处理流程、实现小型化与轻量化设计以及推进集成化设计等多个维度出发,对成像声呐的未来发展进行了展望,旨在为成像声呐在渔业领域的广泛应用和支撑渔业资源的科学管理与决策提供参考。


关键词: 渔业, 成像声呐, 水声探测, 目标识别, 数量估计

Abstract: As a critical tool for modern fishery resource monitoring and assessment, imaging sonar has demonstrated significant potential in fishery resource surveys, fish behavior analysis, and habitat protection. Despite challenges such as environmental complexity, resolution limitations, and large-scale data processing, this technology continues to advance. This paper systematically reviews the progress of imaging sonar technology in fisheries, thoroughly analyzes existing challenges, and envisions future developments. It focuses on multiple application scenarios, including complex and sensitive habitat monitoring, target detection in low-visibility environments, fish behavior analysis, and species population estimation. The paper also comprehensively examines the domestic and international research status of imaging sonar applications in fisheries. Based on this review, it explores future directions for imaging sonar development from several dimensions, such as enhancing resolution, developing automated data processing methods, achieving miniaturization and lightweight design, and promoting integrated design. These advancements aim to facilitate the widespread application of imaging sonar in fisheries and support scientific management and decision-making for fishery resources.


Key words: fishery, imaging sonar, underwater acoustic detection, target recognition, abundance estimation