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首页> 外文期刊>The Journal of the Acoustical Society of America >Reconstruction of nonstationary sound fields based on the time domain plane wave superposition method
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Reconstruction of nonstationary sound fields based on the time domain plane wave superposition method

机译:基于时域平面波叠加法的非平稳声场重构

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摘要

A time-domain plane wave superposition method is proposed to reconstruct nonstationary sound fields. In this method, the sound field is expressed as a superposition of time convolutions between the estimated time-wavenumber spectrum of the sound pressure on a virtual source plane and the time-domain propagation kernel at each wavenumber. By discretizing the time convolutions directly, the reconstruction can be carried out iteratively in the time domain, thus providing the advantage of continuously reconstructing time-dependent pressure signals. In the reconstruction process, the Tikhonov regularization is introduced at each time step to obtain a relevant estimate of the time-wavenumber spectrum on the virtual source plane. Because the double infinite integral of the two-dimensional spatial Fourier transform is discretized directly in the wavenumber domain in the proposed method, it does not need to perform the two-dimensional spatial fast Fourier transform that is generally used in time domain holography and real-time near-field acoustic holography, and therefore it avoids some errors associated with the two-dimensional spatial fast Fourier transform in theory and makes possible to use an irregular microphone array. The feasibility of the proposed method is demonstrated by numerical simulations and an experiment with two speakers.
机译:提出了一种时域平面波叠加方法,用于重建非平稳声场。在这种方法中,声场表示为虚拟声源平面上声压的估计时间波数谱与每个波数处的时域传播内核之间的时间卷积叠加。通过直接离散化时间卷积,可以在时域中迭代地进行重建,因此具有连续重建时间相关压力信号的优势。在重建过程中,在每个时间步引入Tikhonov正则化,以获得虚拟源平面上时波数频谱的相关估计。由于该方法将二维空间傅里叶变换的双无限积分直接在波数域中离散化,因此无需执行通常在时域全息和实测中使用的二维空间快速傅里叶变换。时间近场声全息技术,因此在理论上避免了与二维空间快速傅里叶变换相关的一些误差,并可以使用不规则麦克风阵列。通过数值模拟和两个扬声器的实验证明了该方法的可行性。

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