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A finite element model to improve noise reduction based attenuation measurement of earmuffs in a directional sound field

机译:有限元模型,用于改善定向声场中基于降噪的耳罩衰减测量

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The real attenuation of hearing protection devices (HPD) can be assessed in the field using a method based on continuous field microphone-in-real-ear (F-MIRE) measurements. The two-microphone method provides an indicator called the measured noise reduction (NR*), defined as the difference between the measured exterior (outside the protector) and interior (under the protector) sound pressure levels (SPL). The HPD's attenuation expressed in terms of the more common insertion loss (IL) can then be obtained from NR* using compensation factors. For earmuffs, NR* has been shown to vary of up to 20 dB depending on the angle of incidence of the sound source. Therefore, there is a need to use sound incidence dependent compensation factors to relate NR* and IL. To evaluate these factors and more generally to improve the continuous F-MIRE method, a finite-element (FE) model of an earmuff on an ATF (acoustic test fixture) exposed to a directional sound field has been developed and its predictions compared with lab measurements for several incidence angles. Regarding the external microphone SPL and the NR*, in one-third of octave bands, the model correlates very well with measurements for frequencies below 1250 Hz whatever the sound incidence. Above 1250 Hz, the FE model captures the trends, as a function of the incidence angle, but the agreement generally decreases with increasing frequency. A better correlation between the FE model and the experimental data is achieved for the variation of NR* (Delta NR*) as a function of the sound incidence. Actions, such as (i) accounting for the headband in the model, (ii) refining the modeling of the sound source, (iii) improving the cushion modeling and (iv) better describing the backplate/cushion coupling conditions, are suggested to improve the model accuracy. To illustrate the potential of the modeling to improve the continuous F-MIRE measurement method, the FE model is used to determine an optimal position of the external microphone and to obtain estimates of exposure levels using the left and right ear exterior microphones. (C) 2016 Elsevier Ltd. All rights reserved.
机译:听力保护设备(HPD)的真实衰减可以使用基于连续现场耳内麦克风(F-MIRE)测量的方法在现场进行评估。两麦克风方法提供了一个称为测得的噪声降低(NR *)的指标,该指标定义为测得的外部(保护器外部)和内部(保护器下方)声压级(SPL)之差。然后可以使用补偿因子从NR *获得以更常见的插入损耗(IL)表示的HPD衰减。对于耳罩,根据声源的入射角度,NR *已显示出高达20 dB的变化。因此,需要使用依赖于声入射的补偿因子来关联NR *和IL。为了评估这些因素并更普遍地改善连续F-MIRE方法,已经开发了暴露于定向声场的ATF(声学测试夹具)上的耳罩的有限元(FE)模型,并将其预测与实验室进行了比较测量几个入射角。关于外部麦克风SPL和NR *,在八度音阶频带的三分之一中,无论声音入射如何,该模型与1250 Hz以下频率的测量值都具有很好的相关性。高于1250 Hz时,有限元模型捕获了随入射角变化的趋势,但一致性通常随频率增加而降低。对于NR *(Delta NR *)作为声音入射函数的变化,FE模型与实验数据之间实现了更好的相关性。建议采取以下行动,例如(i)考虑模型中的头带,(ii)完善声源的建模,(iii)改善缓冲模型和(iv)更好地描述背板/垫层耦合条件。模型的准确性。为了说明该模型改善连续F-MIRE测量方法的潜力,使用FE模型来确定外部麦克风的最佳位置,并使用左,右耳外部麦克风来获得暴露水平的估计值。 (C)2016 Elsevier Ltd.保留所有权利。

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