Liu Yu, Quayle Alexander R, Dowling Ann P, Sijtsma Pieter
Department of Engineering, University of Cambridge, Cambridge CB21PZ, United Kingdom.
J Acoust Soc Am. 2008 Jul;124(1):182-91. doi: 10.1121/1.2931950.
In this paper, a beamforming correction for identifying dipole sources by means of phased microphone array measurements is presented and implemented numerically and experimentally. Conventional beamforming techniques, which are developed for monopole sources, can lead to significant errors when applied to reconstruct dipole sources. A previous correction technique to microphone signals is extended to account for both source location and source power for two-dimensional microphone arrays. The new dipole-beamforming algorithm is developed by modifying the basic source definition used for beamforming. This technique improves the previous signal correction method and yields a beamformer applicable to sources which are suspected to be dipole in nature. Numerical simulations are performed, which validate the capability of this beamformer to recover ideal dipole sources. The beamforming correction is applied to the identification of realistic aeolian-tone dipoles and shows an improvement of array performance on estimating dipole source powers.
本文提出并通过数值和实验实现了一种用于通过相控麦克风阵列测量识别偶极子源的波束形成校正方法。为单极子源开发的传统波束形成技术应用于重建偶极子源时可能会导致显著误差。一种先前的麦克风信号校正技术被扩展,以考虑二维麦克风阵列的源位置和源功率。通过修改用于波束形成的基本源定义,开发了新的偶极子波束形成算法。该技术改进了先前的信号校正方法,产生了一种适用于本质上疑似为偶极子的源的波束形成器。进行了数值模拟,验证了该波束形成器恢复理想偶极子源的能力。将波束形成校正应用于实际风成音偶极子的识别,并显示出在估计偶极子源功率方面阵列性能的提高。