Egolf D P, Haley B T, Howell H C, Larson V D
Department of Electrical Engineering, University of Wyoming, Laramie 82071.
J Acoust Soc Am. 1988 Jul;84(1):1-10. doi: 10.1121/1.396965.
There are numerous articles wherein mathematical models of various parts of an in situ hearing aid have been reported. Such parts include, for example, the microphone, receiver, cylindrical tubes carrying sound to the eardrum and out through the earmold vent, and the external path from the vent back to the microphone. This article extends these earlier works to include the hearing-aid amplifier. In particular, a mathematical technique for characterizing the amplifier in combination with the receiver is reported. Cascade parameters of a two-port model of one particular amplifier/receiver combination are obtained by this method. The cascade-parameter data and the method of obtaining this data are verified by two different experimental procedures. One procedure involves both computing and measuring the input driving-point impedance of the amplifier/receiver combination. In the second procedure, the amplifier-to-eardrum transfer function of a hearing aid incorporating this same amplifier/receiver combination and mounted on an artificial ear is both computed and measured. Experimental and computed values of this transfer function for three different earmold geometries are in reasonably close agreement. The amplifier/receiver model reported herein will be used in future studies of acoustic feedback in hearing aids.
有许多文章报道了原位助听器各部分的数学模型。这些部分包括,例如,麦克风、接收器、将声音传至鼓膜并通过耳模通气孔传出的圆柱形管道,以及从通气孔回到麦克风的外部路径。本文将这些早期工作扩展至包括助听器放大器。特别地,报道了一种用于结合接收器对放大器进行特性描述的数学技术。通过这种方法获得了一种特定放大器/接收器组合的二端口模型的级联参数。级联参数数据以及获取此数据的方法通过两种不同的实验程序进行了验证。一种程序涉及计算和测量放大器/接收器组合的输入驱动点阻抗。在第二种程序中,对安装在人工耳上的包含相同放大器/接收器组合的助听器的放大器至鼓膜传递函数进行了计算和测量。三种不同耳模几何形状的该传递函数的实验值和计算值相当接近。本文报道的放大器/接收器模型将用于未来助听器声反馈的研究。