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用于测量听力保护器衰减的声学测试装置。第二部分:外耳建模、模拟骨传导以及测试装置与真耳数据比较。

The use of acoustical test fixtures for the measurement of hearing protector attenuation. Part II: Modeling the external ear, simulating bone conduction, and comparing test fixture and real-ear data.

作者信息

Schroeter J, Poesselt C

出版信息

J Acoust Soc Am. 1986 Aug;80(2):505-27. doi: 10.1121/1.394046.

Abstract

This paper investigates two main features of the human head which influence the measured attenuation of circumaural and intraaural hearing protection devices (HPDs): the external ear and the different pathways of bone conduction. A theoretical model for the external ear shows that its influence on the insertion loss of HPDs, on the sensitivity level of headphones or earphones, and on the insertion gain of hearing aids, all can be described by one equation. While it is not necessary to simulate the eardrum impedance in order to measure the insertion loss of earmuffs and the sensitivity level of headphones with acoustical test fixtures (ATFs), the required accuracy of an ear simulator is more stringent when the same measurements are performed on intraaural devices. For the evaluation of HPDs, bone conduction plays an important role. We have developed a model to estimate HPD-dependent bone conduction effects. The model includes two bone conduction sources: one in the external ear and one in the middle ear. The model explains, for example, the occlusion effect of HPDs and the masking error at low frequencies due to physiological noise that arises when real-ear attenuation at threshold (REAT) measurements are made. Consequently, objectively measured insertion loss can now be used to predict REAT with improved accuracy. ATF and REAT data are compared using nine earmuffs and nine earplugs. In the majority of cases, the two sets of data agree well. Discrepancies are discussed.

摘要

本文研究了影响耳周式和耳道式听力保护装置(HPD)测量衰减的人体头部的两个主要特征:外耳和骨传导的不同路径。外耳的理论模型表明,其对HPD插入损失、耳机或耳塞灵敏度水平以及助听器插入增益的影响,都可以用一个方程来描述。虽然在使用声学测试装置(ATF)测量耳罩的插入损失和耳机的灵敏度水平时,没有必要模拟鼓膜阻抗,但在对耳道式装置进行相同测量时,对耳模拟器的精度要求更为严格。对于HPD的评估,骨传导起着重要作用。我们开发了一个模型来估计与HPD相关的骨传导效应。该模型包括两个骨传导源:一个在外耳,一个在中耳。例如,该模型解释了HPD的堵塞效应以及在进行阈值下真实耳衰减(REAT)测量时由于生理噪声在低频处产生的掩蔽误差。因此,现在可以使用客观测量的插入损失来更准确地预测REAT。使用九个耳罩和九个耳塞比较了ATF和REAT数据。在大多数情况下,两组数据吻合良好。对差异进行了讨论。

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