基于改进的反卷积波束形成声源定位方法
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TN912.3

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湖南省重点领域研发计划基金资助项目(2022GK2068);湖南省自然科学基金省市联合基金资助项目(2021JJ50053)


An Improved Deconvolution-Based Beamforming Method for Sound Source Localization
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    摘要:

    针对传统反卷积算法在实际应用中存在的计算时间较长、分辨率有限等问题,提出了一种融合动量重启与自适应策略的改进型波束形成算法——DAMAS2-GFISTA,旨在提升计算效率的同时保持甚至增强声源成像的分辨能力。并通过在单声源与双声源场景下开展的数值仿真与实测对比,验证了所提算法的有效性与适用性。仿真结果显示,在声源靠近或存在相干干扰的情况下,所提算法能够实现更清晰的声源分离与成像重构,主瓣宽度较CBF压缩了约70%。在相同迭代次数下,单双声源实验中,计算速度分别较DAMAS2提升约1.64倍和1.37倍,在多声源复杂场景下表现出更强的稳定性与计算优势。实际实验中,无论是单声源还是双声源条件下,该方法均展现出良好的定位精度与能量聚焦效果,能够在更短的计算时间内得到更加清晰准确的声源图像,验证了其在复杂声场环境下的实用性与优越性能。

    Abstract:

    In view of the flaws of prolonged computation time and limited resolution in traditional deconvolution algorithms during practical applications, an improved beamforming algorithm—DAMAS2-GFISTA—has thus been proposed, which incorporates momentum restart and adaptive strategies. The effectiveness and applicability of the proposed algorithm can be verified based on numerical simulations and comparative measurements conducted in both single-source and dual-source scenarios. The simulation results show that the proposed algorithm can achieve clearer sound source separation and imaging reconstruction with sound sources in close proximity or in the presence of coherent interference. The main lobe width is compressed by about 70% compared to CBF. Furthermore, under the same number of iterations, the computational speed is increased by about 1.64 times and 1.37 times respectively compared to DAMAS2 method in the single and double sound source experiments, exhibiting an enhanced stability and computational efficiency in complex scenarios with multiple sound sources. In practical experiments, whether under single or dual sound source conditions, the proposed method is characterized with excellent positioning accuracy and energy focusing effect, so as to obtain clearer and more accurate sound source images in a shorter calculation time, thus verifying its practicality and superior performance in complex sound field environments.

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吴胜权,孙 晓.基于改进的反卷积波束形成声源定位方法[J].湖南工业大学学报,2026,40(4):17-25.

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  • 在线发布日期: 2026-02-06
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