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Distribution of standing-wave errors in real-ear sound-level measurements

机译:实耳声级测量中驻波误差的分布

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摘要

Standing waves can cause measurement errors when sound-pressure level (SPL) measurements are performed in a closed ear canal, e.g., during probe-microphone system calibration for distortion-product otoacoustic emission (DPOAE) testing. Alternative calibration methods, such as forward-pressure level (FPL), minimize the influence of standing waves by calculating the forward-going sound waves separate from the reflections that cause errors. Previous research compared test performance (Burkeet al., 2010) and threshold prediction (Rogerset al., 2010) using SPL and multiple FPL calibration conditions, and surprisingly found no significant improvements when using FPL relative to SPL, except at 8 kHz. The present study examined the calibration data collected by Burkeet al. and Rogerset al. from 155 human subjects in order to describe the frequency location and magnitude of standing-wave pressure minima to see if these errors might explain trends in test performance. Results indicate that while individual results varied widely, pressure variability was larger around 4 kHz and smaller at 8 kHz, consistent with the dimensions of the adult ear canal. The present data suggest that standing-wave errors are not responsible for the historically poor (8 kHz) or good (4 kHz) performance of DPOAE measures at specific test frequencies.
机译:当在封闭的耳道中进行声压级(SPL)测量时,例如在用于畸变产物耳声发射(DPOAE)测试的探针-麦克风系统校准期间,驻波会导致测量误差。替代校准方法,例如前向压力水平(FPL),通过计算与引起误差的反射分开的前向声波,可以将驻波的影响最小化。先前的研究比较了使用SPL和多个FPL校准条件的测试性能(Burkeet等,2010)和阈值预测(Rogerset等,2010),并且令人惊讶地发现,相对于SPL,使用FPL时,除了在8 kHz时,没有显着改善。本研究检查了Burkeet等收集的校准数据。和罗杰塞特等人为了描述驻波压力最小值的频率位置和幅值,以了解这些错误是否可以解释测试性能的趋势,来自155位人类受试者的数据。结果表明,尽管个体结果差异很大,但压力变化在4 kHz左右较大,在8 kHz较小,与成年耳道的尺寸一致。当前数据表明,在特定测试频率下,DPOAE测量的历史差(8 kHz)或良好(4 kHz)性能不代表驻波误差。

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