Acoustic Technology, Department of Electrical Engineering, Technical University of Denmark, Ørsteds Plads, Building 352, Kongens Lyngby, DK-2800, Denmark.
Interacoustics Research Unit, Technical University of Denmark, Ørsteds Plads, Building 352, Kongens Lyngby, DK-2800, Denmark.
J Acoust Soc Am. 2019 Jun;145(6):3499. doi: 10.1121/1.5111340.
Measurements of the ear-canal reflectance using an ear probe require estimating the characteristic impedance of the ear canal in situ. However, an oblique insertion of the ear probe into a uniform waveguide prevents accurately estimating its characteristic impedance using existing time-domain methods. This is caused by the non-uniformity immediately in front of the ear probe when inserted at an oblique angle, resembling a short horn loading, and introduces errors into the ear-canal reflectance. This paper gives an overview of the influence of oblique ear-probe insertions and shows how they can be detected and quantified by estimating the characteristic impedance using multiple truncation frequencies, i.e., limiting the utilized frequency range. Additionally, a method is proposed to compensate for the effects on reflectance of an oblique ear-probe insertion into a uniform waveguide. The incident impedance of the horn loading is estimated, i.e., were the uniform waveguide anechoic, which replaces the characteristic impedance when calculating reflectance. The method can compensate for an oblique ear-probe insertion into a uniform occluded-ear simulator and decrease the dependency of reflectance on insertion depth in an ear canal. However, more research is required to further assess the method in ear canals.
使用耳探头测量耳道反射率需要就地估计耳道的特征阻抗。然而,耳探头以倾斜角度插入均匀波导会阻止使用现有的时域方法准确估计其特征阻抗。这是由于当以倾斜角度插入时,探头前方立即出现不均匀性,类似于短号角加载,并会给耳道反射率引入误差。本文概述了斜插耳探头的影响,并展示了如何通过使用多个截止频率(即限制所使用的频率范围)来估计特征阻抗来检测和量化这些影响。此外,还提出了一种方法来补偿斜插耳探头进入均匀波导时对反射率的影响。估计了号角加载的入射阻抗,即均匀波导无回声时的阻抗,当计算反射率时它会取代特征阻抗。该方法可以补偿均匀封闭耳模拟器中的斜插耳探头,并减小耳道中反射率对插入深度的依赖性。然而,需要进一步的研究来进一步评估该方法在耳道中的应用。