Side branch and parallel vent effects in real ears and in acoustical and electrical models.

G A Studebaker, R M Cox
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Abstract

The purpose of the project was to demonstrate and explain the acoustic effects of side branch and parallel vents in individual real ears. It was shown that parallel and side branch vents produce similar low frequency filtering effects and vent-associated reactance resonances. However, when the input system incorporates a side branch vent the sound pressure produced in the ear canal at frequencies above the vent-associated resonance is less than that produced when the input system is unvented. This effect is not seen when the input system is associated with a parallel vent. Data obtained in the real ear canals were compared to analogous measurements made using an acoustical model (the Zwislocki coupler) and an electrical model designed to simulate the hearing aid receiver, input tubing, earmold, ear canal, and eardrum. Both models yielded data very similar to the real ear results. The advantages of each model in predicting the effects of individual earmold vents are discussed.

在真实耳朵和声学和电学模型中的侧分支和平行通风口效应。
该项目的目的是展示和解释单个真实耳朵的侧分支和平行通风口的声学效果。结果表明,平行支路通风口和侧支路通风口产生相似的低频滤波效果和通风口相关的电抗共振。然而,当输入系统包含侧分支通风口时,在高于通风口相关共振频率的耳道中产生的声压小于输入系统无通风口时产生的声压。当输入系统与并行通风口相关联时,不会看到这种效果。在真实耳道中获得的数据与使用声学模型(Zwislocki耦合器)和设计用于模拟助听器接收器、输入管、耳模、耳道和鼓膜的电气模型进行的类似测量进行比较。这两种模型得到的数据与真实耳朵的结果非常相似。讨论了每种模型在预测单个耳模通风口效果方面的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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