Bi Chuan-Xing, Geng Lin, Zhang Xiao-Zheng
Institute of Sound and Vibration Research, Hefei University of Technology, 193 Tunxi Road, Hefei 230009, People's Republic of China.
J Acoust Soc Am. 2014 Jun;135(6):3474-82. doi: 10.1121/1.4875576.
To extract the desired non-stationary sound field generated by a target source in the presence of disturbing sources, a real-time sound field separation method with pressure and particle acceleration measurements is proposed. In this method, the pressure and particle acceleration signals at a time instant are first measured on one measurement plane, where the particle acceleration is obtained by the finite difference approximation with the aid of an auxiliary measurement plane; then, the desired pressure signal generated by the target source at the same time instant can be extracted in a timely manner, by a simple superposition of the measured pressure and the convolution between the measured particle acceleration and the derived impulse response function. Thereby, the proposed method possesses a significant feature of real-time separation of non-stationary sound fields, which provides the potential to in situ analyze the radiation characteristics of a non-stationary source. The proposed method was examined through numerical simulation and experiment. Results demonstrated that the proposed method can not only extract the desired time-evolving pressure signal generated by the target source at any space point, but can also obtain the desired spatial distribution of the pressure field generated by the target source at any time instant.
为了在存在干扰源的情况下提取目标源产生的所需非平稳声场,提出了一种基于压力和粒子加速度测量的实时声场分离方法。在该方法中,首先在一个测量平面上测量某一时刻的压力和粒子加速度信号,其中粒子加速度通过借助辅助测量平面的有限差分近似获得;然后,通过将测量到的压力与测量到的粒子加速度和导出的脉冲响应函数之间的卷积进行简单叠加,能够及时提取目标源在同一时刻产生的所需压力信号。因此,所提出的方法具有非平稳声场实时分离的显著特点,这为原位分析非平稳源的辐射特性提供了潜力。通过数值模拟和实验对所提出的方法进行了检验。结果表明,该方法不仅能够提取目标源在任何空间点产生的所需随时间变化的压力信号,而且还能够获得目标源在任何时刻产生的压力场的所需空间分布。