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首页> 外文期刊>The Journal of the Acoustical Society of America >Acoustic analysis by spherical microphone array processing of room impulse responses
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Acoustic analysis by spherical microphone array processing of room impulse responses

机译:球形麦克风阵列处理房间冲激响应的声学分析

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摘要

Spherical microphone arrays have been recently used for room acoustics analysis, to detect the direction-of-arrival of early room reflections, and compute directional room impulse responses and other spatial room acoustics parameters. Previous works presented methods for room acoustics analysis using spherical arrays that are based on beamforming, e.g., delay-and-sum, regular beamforming, and Dolph-Chebyshev beamforming. Although beamforming methods provide useful directional selectivity, optimal array processing methods can provide enhanced performance. However, these algorithms require an array cross-spectrum matrix with a full rank, while array data based on room impulse responses may not satisfy this condition due to the single frame data. This paper presents a smoothing technique for the cross-spectrum matrix in the frequency domain, designed for spherical microphone arrays, that can solve the problem of low rank when using room impulse response data, therefore facilitating the use of optimal array processing methods. Frequency smoothing is shown to be performed effectively using spherical arrays, due to the decoupling of frequency and angular components in the spherical harmonics domain. Experimental study with data measured in a real auditorium illustrates the performance of optimal array processing methods such as MUSIC and MVDR compared to beamforming.
机译:球形麦克风阵列最近已用于房间声学分析,以检测早期房间反射的到达方向,并计算方向性房间冲激响应和其他空间房间声学参数。以前的工作提出了使用基于波束成形的球面阵列进行房间声学分析的方法,例如延迟与和,常规波束成形和Dolph-Chebyshev波束成形。尽管波束成形方法提供了有用的方向选择性,但是最佳阵列处理方法可以提供增强的性能。但是,这些算法需要具有完整秩的阵列互谱矩阵,而基于房间脉冲响应的阵列数据可能由于单帧数据而无法满足此条件。本文提出了一种针对球面麦克风阵列的频域交叉谱矩阵平滑技术,该技术可以解决使用室内脉冲响应数据时的低秩问题,从而有助于使用最佳的阵列处理方法。由于球形谐波域中频率和角度分量的去耦,显示了使用球形阵列可以有效地执行频率平滑。在真实的礼堂中测量数据的实验研究表明,与波束成形相比,诸如MUSIC和MVDR的最佳阵列处理方法的性能更高。

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