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扬声器的高海拔性能及其对听力测试结果的潜在影响。

High Altitude Performance of Loudspeakers and Potential Impact on Audiometric Findings.

作者信息

Lucertini Marco, Botti Teresa, Sanjust Filippo, Cerini Luigi, Autore Alberto, Lucertini Lorenzo, Sisto Renata

出版信息

Aerosp Med Hum Perform. 2019 Jul 1;90(7):655-659. doi: 10.3357/AMHP.5262.2019.

Abstract

The evaluation of how air rarefaction can affect a loudspeaker performance at altitude implies the need for characterization of earphones during hypobaric conditions. The aim of this study was phonometric analysis at different altitudes of the acoustic output of a widely used earphone model, along with its consequences on audiological investigations conducted under such environmental conditions. The transfer function of a TDH-39P earphone was analyzed with an artificial ear under nine different altitude levels, from sea level up to 35,000 ft, inside a hypobaric chamber. A specific phonometric system not sensitive to environmental pressure changes was used. Other potentially confounding factors, such as environmental temperature and humidity, were continuously monitored. No relevant temperature or humidity changes were detected. The sound pressure level generated by the earphone under hypobaric conditions was found considerably affected by air density changes. These data produced a correction table aiming at recalibrating the earphone's output at each audiometric octave test frequency within the 250-8000 Hz range. Quite different characteristics of response were observed at different audiometric frequencies. Such findings were particularly evident for altitudes exceeding 12,000 ft. The development of a frequency-selective and altitude-related correction factor for acoustic stimuli is an essential aspect when hearing threshold measurements in hypobaric environments are performed.

摘要

评估高空空气稀薄对扬声器性能的影响意味着需要对处于低压环境下的耳机进行特性描述。本研究的目的是对一种广泛使用的耳机型号在不同高度下的声学输出进行声压测量分析,以及在这种环境条件下进行听力检查时所产生的后果。在低压舱内,使用人工耳在从海平面到35000英尺的九个不同高度水平下分析TDH - 39P耳机的传递函数。使用了一种对环境压力变化不敏感的特定声压测量系统。持续监测其他潜在的混杂因素,如环境温度和湿度。未检测到相关的温度或湿度变化。发现耳机在低压条件下产生的声压级受到空气密度变化的显著影响。这些数据生成了一个校正表,旨在重新校准耳机在250 - 8000Hz范围内每个听力测试倍频程测试频率下的输出。在不同的听力测试频率下观察到了截然不同的响应特性。对于超过12000英尺的高度,这些发现尤为明显。在低压环境下进行听力阈值测量时,开发与频率选择和高度相关的声学刺激校正因子是一个重要方面。

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