Reid Greg L, Milios Evangelos
Department of Computer Science, York University, Toronto M3J 1P3, Canada.
J Acoust Soc Am. 2003 Jan;113(1):185-93. doi: 10.1121/1.1518469.
Estimating the direction of arrival of sound in three-dimensional space is typically performed by generalized time-delay processing on a set of signals from a fixed array of omnidirectional microphones. This requires specialized multichannel A/D hardware, and careful arrangement of the microphones into an array. This work is motivated by the desire to instead only use standard two-channel audio A/D hardware and portable equipment. To estimate direction of arrival of persistent sound, the position of the microphones is made variable by mounting them on one or more computer-controlled pan-and-tilt units. In this paper, we describe the signal processing and control algorithm of a device with two omnidirectional microphones on a fixed baseline and two rotational degrees of freedom. Experimental results with real data are reported with both impulsive and speech sounds in an untreated, normally reverberant indoor environment.
估计三维空间中声音的到达方向通常是通过对来自固定全向麦克风阵列的一组信号进行广义时延处理来实现的。这需要专门的多通道A/D硬件,并且要将麦克风仔细排列成一个阵列。这项工作的动机是希望仅使用标准的双通道音频A/D硬件和便携式设备。为了估计持续声音的到达方向,通过将麦克风安装在一个或多个计算机控制的平移和倾斜单元上,使麦克风的位置可变。在本文中,我们描述了一种在固定基线上具有两个全向麦克风且有两个旋转自由度的设备的信号处理和控制算法。报告了在未处理的、通常有混响的室内环境中对脉冲声和语音进行实际数据的实验结果。