Zhang Xiao-Zheng, Bi Chuan-Xing, Zhang Yong-Bin, Xu Liang
Institute of Sound and Vibration Research, Hefei University of Technology, 193 Tunxi Road, Hefei 230009, People's Republic of China.
J Acoust Soc Am. 2020 Oct;148(4):2123. doi: 10.1121/10.0002263.
A time domain angular spectrum method is proposed to reconstruct nonstationary sound fields. In this method, the sound field is expressed as a superposition of a series of plane wave bases, and the plane wave basis is constructed by an impulse response function that relates the time domain angular spectrum to the field point pressure. The impulse response function consists of two parts, the propagating plane waves and the evanescent plane waves, and their physical interpretation is provided. By discretizing the time convolution between the plane wave strength and the impulse response function, the reconstruction can be carried out at each time step, thus providing the advantage of real-time reconstructing sound fields. Since the real-time reconstruction process is non-recursive, it can provide a stable reconstruction. In the reconstruction process, the Tikhonov regularization is introduced at each time step to obtain an appropriate estimation of the plane wave strength. Numerical simulations with an unsteady excitation plate and an experiment with an impacted plate were carried out to demonstrate the feasibility of the proposed method on reconstructing nonstationary sound fields. The effect of numerical parameters on the reconstruction accuracy was also investigated in the numerical simulations.
提出了一种时域角谱方法来重建非平稳声场。在该方法中,声场被表示为一系列平面波基的叠加,并且平面波基由将时域角谱与场点压力相关联的脉冲响应函数构建而成。脉冲响应函数由两部分组成,即传播平面波和倏逝平面波,并给出了它们的物理解释。通过离散平面波强度与脉冲响应函数之间的时间卷积,可以在每个时间步进行重建,从而具有实时重建声场的优势。由于实时重建过程是非递归的,所以它可以提供稳定的重建。在重建过程中,在每个时间步引入蒂霍诺夫正则化以获得平面波强度的适当估计。进行了非稳态激励板的数值模拟和冲击板的实验,以证明所提方法在重建非平稳声场方面的可行性。在数值模拟中还研究了数值参数对重建精度的影响。