Sonometrics Inc., 8306 Huntington Road, Huntington Woods, Michigan 48070, USA.
J Acoust Soc Am. 2011 Jan;129(1):219-24. doi: 10.1121/1.3518754.
This paper is concerned with probes for measuring vector sound intensity in air using the minimum number of sound-pressure sensors. The probes consist of an arrangement of four small microphones at the vertices of a regular tetrahedron. They are connected to a digital signal processor, which determines the sound-intensity vector, using the cross-spectral formulation based on finite-difference approximations. Determining the direction of a sound source is an obvious application. To do this accurately the probes should be omnidirectional. This implies that the microphones in the probe have to be omnidirectional and to have the same response. Results in the paper show that the direction of a sound source can be determined with an accuracy of a few degrees. Two types of probes are described. One measures the sound-intensity vector in three-dimensional space. The other measures the vector in a half space such as would occur above the ground or in front of a wall.
本文探讨了使用最少数量的声压传感器测量空气中矢量声强的探头。探头由正四面体顶点处的四个小麦克风组成。它们连接到数字信号处理器,该处理器使用基于有限差分近似的互谱公式来确定声强矢量。确定声源的方向是一个明显的应用。为了准确地做到这一点,探头应该是全方位的。这意味着探头中的麦克风必须是全方位的并且具有相同的响应。本文的结果表明,声源的方向可以以几度的精度来确定。描述了两种类型的探头。一种在三维空间中测量声强矢量。另一种则测量半空间(如地面上方或墙壁前方)中的矢量。