首页> 外文期刊>The Journal of the Acoustical Society of America >Numerical simulations of near-field head-related transfer functions: Magnitude verification and validation with laser spark sources
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Numerical simulations of near-field head-related transfer functions: Magnitude verification and validation with laser spark sources

机译:近场头部相关传递函数的数值模拟:激光火花源的大小验证和验证

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Despite possessing an increased perceptual significance, near-field head-related transfer functions (nf-HRTFs) are more difficult to acquire compared to far-field head-related transfer functions. If properly validated, numerical simulations could be employed to estimate nf-HRTFs: the present study aims to validate the usage of wave-based simulations in the near-field. A thorough validation study is designed where various sources of error are investigated and controlled. The present work proposes the usage of a highly-omnidirectional laser-induced breakdown (LIB) of air as an acoustic point source in nf-HRTF measurements. Despite observed departures from the linear regime of the LIB pressure pulse, the validation results show that asymptotically-estimated solutions to a lossless model (wave-equation and rigid boundaries) agree in magnitude with the LIB-measured nf-HRTF of a rigid head replica approximately within 1-2 dB up to about 17 kHz. Except a decreased reliability in notch estimation, no significant shortcoming of the continuous model is found relative to the measurements below 17 kHz. The study also shows the difficulty in obtaining accurate surface boundary impedance values for accurate validation studies. (C) 2020 Author(s).
机译:尽管具有增加的感知意义,但与远场头部相关的转移功能相比,近场头部相关的转移功能(NF-HRTF)更难以获得。如果正确验证,可以使用数值模拟来估算NF-HRTFS:本研究旨在验证近场中基于波的模拟的使用。彻底的验证研究是根据调查和控制各种错误来源的验证研究。本工作提出了在NF-HRTF测量中作为声点源的高度全向激光诱导的空气击穿(Lib)的用途。尽管观察到来自LIB压力脉冲的线性制度的偏离,但验证结果表明,渐近估计的无损模型(波浪方程和刚性边界)的估计解决方案幅度达到刚性头副本的lib测量的NF-HRTF大约在1-2 dB内,最高可达约17 kHz。除了陷波估计下降的可靠性之外,除了低于17 kHz以下的测量值,没有发现连续模型的显着缺点。该研究还展示了获得准确验证研究的精确表面边界阻抗值的难度。 (c)2020作者。

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