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Analysis and Comparison of Inter-Channel Level Difference and Interaural Level Difference

机译:声道间电平差异和耳间电平差异的分析与比较

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The directional perception of human ear for the sound at horizontal plane mainly depends on binaural cues, Interaural Level Difference (ILD), Interaural Time Difference (ITD) and Interaural Correlation (IC). And ILD plays a leading role for human to locate the position of sound with frequency above 1.5 KHz. In spatial audio applications, Inter-Channel Level Difference (ICLD) between loudspeaker signals are used to represent the location information of phantom sources generated by two loudspeakers. For headphone application, ILD and ICLD axe approximate, so the perceptual characteristics of ILD can be used as a replacement for that of ICLD. But due to the attenuation influence of the transfer procedure from loudspeakers to humans ears, ICLD between loudspeakers signals are no longer the same with ILD between signals arrive at two ears. And these differences are always ignored in current spatial audio applications such as the perceptual coding of spar tial parameters. So in this paper we focus on the analysis and comparison of ICLD and ILD from their formation and their values with different loudspeaker configurations. Experimented results showed that the difference of ILD and ICLD could be up to 55 dB, and the research of this paper may be an important part or reference for further research about spatial audio applications such as coding, reconstruction, etc.
机译:人耳对水平面声音的定向感知主要取决于双耳提示,双耳水平差(ILD),双耳时间差(ITD)和双耳相关性(IC)。 ILD在人类定位频率高于1.5 KHz的声音时起着主导作用。在空间音频应用中,扬声器信号之间的通道间电平差(ICLD)用于表示由两个扬声器生成的幻像源的位置信息。对于耳机应用,ILD和ICLD近似,因此ILD的感知特性可以代替ICLD的感知特性。但是,由于从扬声器到人耳的传输过程的衰减影响,扬声器信号之间的ICLD与到达两只耳朵的信号之间的ILD不再相同。这些差异在当前的空间音频应用(例如空间参数的感知编码)中总是被忽略。因此,在本文中,我们着重于分析和比较ICLD和ILD的组成和在不同扬声器配置下的值。实验结果表明,ILD和ICLD的差异可能高达55 dB,本文的研究可能是进一步研究空间​​音频应用(例如编码,重构等)的重要部分或参考。

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