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Analysis on the timbre of Ambisonics recording by circular and spherical microphone array using a binaural loudness model

机译:用双耳响度模型分析圆形和球形麦克风阵列循环录制的脉络

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Ambisonics are a series of flexible sound reproduction systems that decompose and reconstruct sound field by each order approximation of spatial harmonics decomposition. Circular or spherical microphone array has been used for Ambisonics recording. For an array with given radius as well as given number and configuration of microphones, the spatial harmonics signals up to certain temporal frequency and certain order can be derived from the array outputs with appropriate accuracy. When the temporal frequency exceeds the given limitation of array, however, spatial aliasing occurs in the derived spatial harmonics signals. Spatial aliasing in recording causes error in reconstructed sound field, which inevitably change the timbre in reproduction. The present work analyzes the timbre in Ambisonics recording by rigid circular and spherical microphone array. The binaural loudness level spectra are used as a criterion to evaluate the timbre in reproduction. The results indicate that, array recording influences little on the binaural loudness level spectra and thus timbre in final reconstructed sound field providing that the high-frequency limit of microphone array exceeds that of sound field reconstruction. Increasing number of microphones extends the high-frequency limit of array and thus improves the timbre.
机译:amisisisics是一系列灵活的声音再现系统,通过每个顺序近似分解和重建声场的空间谐波分解的近似。圆形或球形麦克风阵列已用于野蛮录制。对于具有给定半径的阵列以及给定的数量和麦克风配置,可以通过适当的精度从阵列输出导出到某些时间频率和某些顺序的空间谐波信号。然而,当时间频率超过阵列的给定限制时,在衍生的空间谐波信号中发生空间次叠。记录中的空间别名会导致重建的声场中的错误,这不可避免地改变了再现中的音色。目前的工作分析了刚性圆形和球形麦克风阵列的amisiSics中的Timbre。双耳响度水平光谱用作评估繁殖中的Timbre的标准。结果表明,阵列记录对双耳响度级别光谱的影响几乎影响,因此在最终重建的声场中的TIMBRE提供了麦克风阵列的高频极限超过声场重建的高频极限。越来越多的麦克风延长了阵列的高频极限,从​​而改善了摩尔布鲁。

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