Industrial Research Ltd., P.O. Box 31-310, Lower Hutt, New Zealand.
J Acoust Soc Am. 2011 Mar;129(3):1429-38. doi: 10.1121/1.3533689.
Sound reproduction systems using omnidirectional loudspeakers produce reflections from room surfaces which interfere with the desired sound field within the array. While active compensation systems can reduce the reverberant level, they require calibration in each room and are processor-intensive. Directional loudspeakers allow the direct to reverberant level to be improved within the array, but still produce a finite exterior field which reflects from the room surfaces. The use of variable-directivity loudspeakers allows the exterior field to be eliminated at low frequencies by implementing the Kirchhoff-Helmholtz integral equation. This paper investigates the performance of variable-directivity arrays in reducing reverberant levels and compares the results with those derived in a previous paper for fixed-directivity arrays. The results presented may have some impact on the design of commercial multi-channel systems for sound reproduction.
使用全向扬声器的声音再现系统会从房间表面产生反射,从而干扰阵列中的期望声场。虽然主动补偿系统可以降低混响水平,但它们需要在每个房间中进行校准,并且处理器密集度高。定向扬声器允许在阵列内提高直达混响水平,但仍会产生从房间表面反射的有限外部场。可变指向性扬声器的使用通过实现基尔霍夫-亥姆霍兹积分方程,可以在低频时消除外部场。本文研究了可变指向性阵列在降低混响水平方面的性能,并将结果与之前针对固定指向性阵列得出的结果进行了比较。所提出的结果可能会对商业多声道声音再现系统的设计产生一定的影响。