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A Transfer Matrix Model of the IEC 60318-4 Ear Simulator: Application to the Simulation of Earplug Insertion Loss

机译:IEC 60318-4耳朵模拟器的传输矩阵模型:应用于耳塞插入损耗的仿真

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摘要

The IEC 60318-4 ear simulator is used to measure the insertion loss (IL) of earplugs in the ear canal of an acoustical test fixture (ATF) and is designed to represent an average acoustic impedance (in a reference plane) of the human ear. The ear simulator is usually modeled using a lumped parameter model (LPM) which has frequency limitations and inadequately accounts for the thermo-viscous effects in the simulator. The simulator numerical models that can better deal with the thermo-viscous phenomena often lack essential geometric details. Most related studies also suffer from the lack of experimental validation of the models. Therefore, a transfer matrix (TM) model of the IEC 60318-4 simulator is proposed based on a direct assessment of its geometric dimensions. Such a model is of particular interest for designing artificial ear simulators. The variability in the simulator impedance due to the geometric uncertainties is quantified using the Monte Carlo method. The TM model is validated using i) a finite element (FE) model of the simulator and ii) impedance measurements with a sound intensity probe. It is found to better describe the simulator impedance above 3 kHz compared to the LPM. The TM model is then coupled to a FE model of an occluded ATF ear canal to simulate the IL of an earplug in the frequency range [100 Hz, 10 kHz]. In the model, the simulator is considered as a cylindrical cavity terminated by an equivalent tympanic impedance which is determined from the TM model to simulate the sound pressure measured at the real microphone position (not at the reference plane) in the ATF ear canal. The simulated IL is validated against i) that obtained with a complete FE model of the corresponding system and ii) measurements using an ATF. The TM model is shown to better agree with the simulator FE model than the LPM above 6 kHz regarding the earplug IL simulated using this method.
机译:IEC 60318-4耳朵模拟器用于测量声学测试夹具(ATF)的耳道中耳塞的插入损耗(IL),并且设计成代表人耳的平均声阻抗(参考平面) 。耳朵模拟器通常使用集总参数模型(LPM)进行建模,其具有频率限制,并且对模拟器中的热粘性效果不充分。可以更好地处理热粘性现象的模拟器数值模型通常缺乏必要的几何细节。大多数相关的研究也缺乏模型的实验验证。因此,基于其几何尺寸的直接评估,提出了IEC 60318-4模拟器的传输矩阵(TM)模型。这种模型对于设计人造耳朵模拟器特别感兴趣。使用蒙特卡罗方法量化由于几何不确定性引起的模拟器阻抗的可变性。使用i)使用i)使用I)的有限元(FE)模型和II的有限元(FE)模型,II)具有声强探针的阻抗测量。与LPM相比,可以更好地描述3 kHz以上的模拟器阻抗。然后,TM模型耦合到遮挡ATF耳道的FE模型,以模拟频率范围内的耳塞的IL [100Hz,10 kHz]。在该模型中,模拟器被认为是由由TM模型确定的等效鼓膜阻抗终止的圆柱形腔,以模拟ATF耳道中的真实麦克风位置(不在参考平面)处测量的声压。模拟的IL被验证为I),其使用ATF使用ATF的相应系统的完整FE模型获得。 TM模型显示在使用此方法模拟的耳塞IL上方的LPM比LPM更好地同意模拟器FE模型。

著录项

  • 来源
    《Acta acustica united with acustica》 |2019年第6期|共11页
  • 作者单位

    Ecole Technol Super Dept Mech Engn 1100 Rue Notre Dame Ouest Montreal PQ H3C 1K3 Canada;

    IRSST Direct Sci 505 Blvd Maisonneuve Ouest Montreal PQ H3A 3C2 Canada;

    Ecole Technol Super Dept Mech Engn 1100 Rue Notre Dame Ouest Montreal PQ H3C 1K3 Canada;

    IRSST Direct Sci 505 Blvd Maisonneuve Ouest Montreal PQ H3A 3C2 Canada;

    Ecole Technol Super Dept Mech Engn 1100 Rue Notre Dame Ouest Montreal PQ H3C 1K3 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 声学;
  • 关键词

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