首页> 外文会议>Audio Engineering Society(AES) International Conference; 20060630-0702; Pitea(SE) >THE EFFECT ON SPATIAL IMPRESSION OF THE CONFIGURATION AND DIRECTIVITY OF THREE FRONTAL MICROPHONES USED IN MULTI-CHANNEL STEREOPHONIC
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THE EFFECT ON SPATIAL IMPRESSION OF THE CONFIGURATION AND DIRECTIVITY OF THREE FRONTAL MICROPHONES USED IN MULTI-CHANNEL STEREOPHONIC

机译:多通道立体声中使用的三种前置麦克风对空间构型和方向性的影响

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The effect on subjective spatial impression was investigated given variation in the configuration and directivity patterns of three frontal microphones used in multi-channel stereophonic recordings. In particular, this study sought to find an optimal microphone configuration to maintain good sound localization and good spatial impression at off-center listening positions. Two subjective listening experiments were completed in an anechoic room and a low-reverberation room. From the results of the first experiment, involving ratings on combinations of microphone directivity patterns and configurations by comparing "angular distortion", the following microphone array was proposed: a left/right pair of omni-directional microphones spaced at 2m from each other, and a bi-directional microphone positioned 40cm in front of center point between left and right microphones. The second experiment employed the Semantic Differential (SD) method to compare subjective impressions of sounds recorded using two different arrays, one being the proposed configuration and the other being a conventional configuration of three uni-directional microphones. The novel proposed array showed higher "spatial impression" and "softness" scores, and was able to maintain "localization" scores within an acceptable range at a listening position 50cm off the center axis.
机译:考虑到用于多声道立体声录音的三个前置麦克风的配置和指向性模式的变化,研究了对主观空间印象的影响。特别是,这项研究试图找到一种最佳的麦克风配置,以在偏心聆听位置保持良好的声音定位和良好的空间印象。在消声室和低混响室中完成了两个主观听觉实验。根据第一个实验的结果,涉及通过比较“角度失真”对麦克风指向性模式和配置的组合进行评级,提出了以下麦克风阵列:左右一对全向麦克风,彼此隔开2m,并且双向麦克风,位于左右麦克风之间的中心点前方40厘米处。第二个实验使用语义差分(SD)方法来比较使用两个不同阵列记录的声音的主观印象,一个是建议的配置,另一个是三个单向麦克风的常规配置。提出的新颖阵列显示出较高的“空间印象”和“柔软度”得分,并且能够在距中心轴50cm的收听位置将“定位”得分保持在可接受的范围内。

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