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Further assessment of forward pressure level for in situ calibration

机译:进一步评估前向压力水平以进行原位校准

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摘要

Quantifying ear-canal sound level in forward pressure has been suggested as a more accurate and practical alternative to sound pressure level (SPL) calibrations used in clinical settings. The mathematical isolation of forward (and reverse) pressure requires defining the Thévenin-equivalent impedance and pressure of the sound source and characteristic impedance of the load; however, the extent to which inaccuracies in characterizing the source and/or load impact forward pressure level (FPL) calibrations has not been specifically evaluated. This study examined how commercially available probe tips and estimates of characteristic impedance impact the calculation of forward and reverse pressure in a number of test cavities with dimensions chosen to reflect human ear-canal dimensions. Results demonstrate that FPL calibration, which has already been shown to be more accurate than in situ SPL calibration, can be improved particularly around standing-wave null frequencies by refining estimates of characteristic impedance. Better estimates allow FPL to be accurately calculated at least through 10 kHz using a variety of probe tips in test cavities of different sizes, suggesting that FPL calibration can be performed in ear canals of all sizes. Additionally, FPL calibration appears a reasonable option when quantifying the levels of extended high-frequency (10–18 kHz) stimuli.
机译:有人提出,对前向压力中的耳道声级进行量化是对临床环境中使用的声压级(SPL)校准的一种更准确,更实用的选择。对正向(和反向)压力进行数学隔离需要定义Thévenin等效阻抗和声源压力以及负载的特征阻抗。但是,尚未明确评估表征源和/或负载的不准确程度会影响正向压力水平(FPL)校准的程度。这项研究检查了市售探头尖端和特征阻抗的估计如何影响许多测试腔中正向和反向压力的计算,这些腔的尺寸选择为能反映人耳道的尺寸。结果表明,已经证明比现场SPL校准更精确的FPL校准可以通过改进特征阻抗的估计得到改善,尤其是在驻波零频率附近。更好的估计值可以使用各种大小不同的测试腔中的各种探针在至少10kHz的频率下准确地计算FPL,这表明可以在所有尺寸的耳道中进行FPL校准。此外,在量化扩展的高频(10–18 kHz)刺激水平时,FPL校准似乎是一个合理的选择。

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