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Compression computational grid based on functional beamforming for acoustic source localization

机译:基于功能波束形成的压缩计算网格在声源定位中的应用

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摘要

Phased microphone arrays have become a standard technique for acoustic source localization. Compared with beamforming algorithms such as the conventional beamforming, deconvolution approaches such as DAMAS successfully improve the spatial resolution. However deconvolution approaches usually require high computational effort compared to beamforming algorithms. Without optimizing deconvolution algorithm, recently DAMAS with compression computational grid based on the conventional beamforming (denoted by DAMAS-CG2) has reduced computational run time of DAMAS in applications (Ma and Liu, 2017). This paper proposes a novel algorithm that DAMAS with a novel compression computational grid based on an advance beamforming algorithm functional beamforming (denoted by DAMAS-CG3). This new algorithm takes advantages of functional beamforming to obtain large compression ratio. Simulated applications and experimental applications of benchmark test DLR1 show that DAMAS-CG3 is one order of magnitude faster than DAMAS-CG2 in most cases. In addition, the advantage of DAMAS-CG3 compared to DAMAS-CG2 is particularly more obvious with the threshold decreasing. However for some extreme situations that very complicated sources distribute to a larger extent relative to the scanning plane, the advantage of DAMAS-CG3 compared to DAMAS-CG2 may disappear. In order to get a large compression ratio in any application, the authors highly recommend compressing computational grid based on not only conventional beamforming but also functional beamforming, and then choosing the compression grid with larger compression ratio.
机译:相控麦克风阵列已经成为声源定位的标准技术。与传统的波束成形等波束成形算法相比,DAMAS等反卷积方法成功提高了空间分辨率。然而,与波束形成算法相比,反卷积方法通常需要大量的计算工作。在没有优化解卷积算法的情况下,最近基于传统波束成形的具有压缩计算网格的DAMAS(由DAMAS-CG2表示)减少了DAMAS在应用中的计算运行时间(Ma and Liu,2017)。本文提出了一种基于先进的波束成形算法功能性波束成形(以DAMAS-CG3表示)的具有新型压缩计算网格的DAMAS算法。这种新算法利用功能波束成形的优势来获得较大的压缩率。基准测试DLR1的模拟应用和实验应用表明,在大多数情况下,DAMAS-CG3比DAMAS-CG2快一个数量级。另外,随着阈值的降低,与DAMAS-CG2相比DAMAS-CG3的优势尤其明显。但是,在某些极端情况下,非常复杂的源相对于扫描平面分布更大,与DAMAS-CG2相比,DAMAS-CG3的优势可能会消失。为了在任何应用中获得较大的压缩率,作者强烈建议不仅基于常规波束成形而且还基于功能性波束成形来压缩计算网格,然后选择压缩率较大的压缩网格。

著录项

  • 来源
    《Applied Acoustics》 |2018年第5期|75-87|共13页
  • 作者

    Ma Wei; Liu Xun;

  • 作者单位

    Shanghai Jiao Tong Univ, Sch Aeronaut & Astronaut, Shanghai, Peoples R China;

    Shanghai KeyGo Technol Co Ltd, Shanghai, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microphone arrays; Beamforming; DAMAS; Acoustic; Compression grid;

    机译:麦克风阵列;波束成形;DAMAS;声学;压缩网格;

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