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韩璐, 吴鸣, 杨军, 曹寅. 采用分布式球形阵列的球谐波域声场分离方法[J]. 声学学报, 2023, 48(2): 327-336. DOI: 10.15949/j.cnki.0371-0025.2023.02.003
引用本文: 韩璐, 吴鸣, 杨军, 曹寅. 采用分布式球形阵列的球谐波域声场分离方法[J]. 声学学报, 2023, 48(2): 327-336. DOI: 10.15949/j.cnki.0371-0025.2023.02.003
HAN Lu, WU Ming, YANG Jun, CAO Yin. Sound field separation using distributed spherical microphone array in spherical harmonics domain[J]. ACTA ACUSTICA, 2023, 48(2): 327-336. DOI: 10.15949/j.cnki.0371-0025.2023.02.003
Citation: HAN Lu, WU Ming, YANG Jun, CAO Yin. Sound field separation using distributed spherical microphone array in spherical harmonics domain[J]. ACTA ACUSTICA, 2023, 48(2): 327-336. DOI: 10.15949/j.cnki.0371-0025.2023.02.003

采用分布式球形阵列的球谐波域声场分离方法

Sound field separation using distributed spherical microphone array in spherical harmonics domain

  • 摘要: 为从测得的混合声场信号中提取出需要的目标声场, 提出一种基于分布式球形传声器阵列的声场分离方法。该方法依据声场的球谐波分解, 利用阵列各传声器采集到的声场声压信号, 获得目标声场与干扰声场的球谐波展开系数, 进而估计目标声场。该方法利用声场以不同中心展开的球谐波系数之间的变换关系, 直接建立传声器测量声压信号与整体坐标系下声场展开系数的方程, 与传统的分布式球形阵列声场分离方法, 即先求解局部坐标系下声场展开系数, 再变换为整体展开系数的方法, 进行比较。分别通过数值仿真和实验说明了提出方法的有效性。结果表明: 该方法能够从混合声场中较准确地估计出目标声场, 并且在干扰声场能量增大时, 保持了较小的声场估计误差, 相比于传统方法误差增加更少。

     

    Abstract: In order to extract the desired target sound field from the mixed sound field, a sound field separation method using a distributed spherical microphone array is proposed. Based on the spherical harmonic decomposition of the sound field, the spherical harmonic expansion coefficients of the target sound field and the interference sound field can be obtained using the sound pressure signals received by each microphone of the array. The target sound field can be estimated from the spherical harmonic coefficients. Employing the translation of the spherical harmonic coefficients with different expansion centers, the equations between the sound pressure and the global sound field coefficients are established. The comparison is carried out with the conventional method, in which the sound field expansion coefficients with respect to the local coordinate system are calculated and transformed into the global coordinate system. The proposed method is validated through numerical simulations and experiments. The results show that, the target sound field can be accurately separated from the mixed sound field. When the energy of the interference sound field increases, the sound field estimation error of the proposed method is still small, with less increase compared to the conventional method.

     

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