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中文核心期刊

无人机低空声传播与定位技术研究进展

Low-altitude sound propagation and localization of unmanned aerial vehicles: a survey

  • 摘要: 针对低空无人机监测的迫切需求, 声学探测技术因其无源被动特性、全时段适应性与经济性优势, 为复杂低空环境下无人机监测提供了独特的物理感知维度。本文系统梳理了该领域国内外研究进展, 遵循“声源特性−传播机理−定位方法−系统实现”的技术主线展开综述。首先, 阐述了无人机气动与机械噪声的产生机理、建模方法及其谐波特征; 其次, 分析了低空大气中声传播所受扩展、吸收、气象效应及地形影响的特殊规律, 以及相应的建模方法; 进而, 对比评述了基于到达时间差、波束形成、分布式网络及深度学习的声学定位算法的原理、性能与适用场景; 最后, 介绍了典型声学探测系统的工程化进展, 并凝练出当前面临的基础理论与技术挑战。在此基础上, 展望了物理模型与数据驱动融合、智能阵列与多模态协同等未来发展趋势。

     

    Abstract: In response to the urgent need for monitoring low-altitude unmanned aerial vehicles (UAVs), acoustic detection technology offers a unique physical sensing dimension for drone surveillance in complex low-altitude environments, owing to its passive nature, all-weather adaptability, and cost-effectiveness. This paper provides a comprehensive review of the research progress in this field, both domestically and internationally, following a technical framework that encompasses “source characteristics, propagation mechanisms, localization methods, and system implementation”. Firstly, the mechanisms of airborne and mechanical noise generation in UAVs, the corresponding modeling methods, and their harmonic characteristics are discussed. Secondly, the special effects of atmospheric scattering, absorption, meteorological conditions, and terrain on acoustic propagation in low-altitude environments are analyzed, along with the related modeling techniques. Subsequently, the principles, performance, and applicable scenarios of acoustic localization algorithms based on time-of-arrival differences, beamforming, distributed networks, and deep learning are compared and evaluated. Finally, the engineering developments of typical acoustic detection systems are presented, and the current fundamental theoretical and technical challenges are identified. Based on these findings, the paper outlines future trends in the integration of physical models with data-driven approaches, as well as the collaboration of intelligent arrays and multiple modalities for more advanced systems.

     

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